Curriculum Vitaes

Hajime Yano

  (矢野 創)

Profile Information

Affiliation
Assistant Professor, Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
Assistant Professor, Graduate Institute for Advanced Studies, Space and Astronautical Science Program, The Graduate University for Advanced Studies
Guest Associate Professor, Graduate School of System Design Management, Keio University
(Concurrent)Visiting Associate Professor, Institute of Advanced Biosciences
Affiliate Associate Professor, Graduate School of Science and Engineering, Hosei University
Adjunct Lecturer, School of Engineering Department of Space Systems Engineering, Kyushu Institute of Technology
Research Affiliate, Media Lab, Space Exploration Initiative, Massachusetts Institute of Technology
Degree
Ph.D. in Space Sciences(Oct, 1995, University of Kent at Canterbury, United Kingdom)

Researcher number
00321571
J-GLOBAL ID
200901039611171139
researchmap Member ID
1000292032

External link

Prof. Hajime Yano is a space scientist, professor, and project manager of JAXA/ISAS, Japan, who specializes in solar system exploration science and astrobiology, with an emphasis on sample return missions and space experiments. 

 

As an expert in cosmic dust studies and impact physics for over a quarter of the century, his expertise extends to observational, experimental, analytical, and theoretical works of cosmic dust and space debris, as well as planetary protection and planetary defense.  In particular, he has specialized in in-situ detection and collection of cosmic dust and ultimately sample return missions from their parent bodies such as Stardust, Hayabusa, and Hayabusa-2.

 

Hajime has contributed more than 250 refereed papers as a researcher, a co-investigator, or the principal investigator of about 20 past or ongoing space projects from Japan, Europe, and the United States including LDEF, EuReCa, HST, SFU, Nozomi, Stardust, Hayabusa, Leonid-MAC, SSSAT, IKAROS, Tanpopo, BepiColombo, Hayabusa-2, Tanpopo-2, SpaceSkin, EQUULEUS, DESTINY+, Comet Interceptor, and Gateway.   Through these projects, he has accomplished a number of pioneering works that led to major scientific discoveries and “game-changing” movements in solar system exploration.   Since 2007, Hajime holds and maintains a Project Management Professional (PMP) certification and served as Tanpopo-2 project manager.

 

In the space shuttle era, Hajime established post-flight analysis procedures of micrometeoroid and orbital debris impact signatures on retrieved spacecraft surfaces.  Microscopic analyses of several hundred impacts per spacecraft such as LDEF, EuReCa, and HST revealed their origins and formed a fundamental database for dust environment modeling in near-Earth space. The SFU post-flight analysis formed Japan’s first in-situ measurement database of meteoroids and debris.

 

In 1998-2002, Hajime and his team became the world’s first to use high-definition video imagery for astronomical research and their airborne observation onboard the Leonid MAC mission, which yielded both the faintest influx and organic and volatile spectroscopy of the Leonid meteor storm.  The Leonid MAC mission resulted in a quantum leap of meteor science as a “human mission to comets without going to space, by using the atmosphere as a large dust detector”.

 

Hajime developed and operated a number of new instruments for cosmic dust detection and collection.  The detectors include the Nozomi-MDC and DESTINY+ DDA impact-induced plasma detector/analyzer, the BepiColombo-MDM and Gateway ERSA/LVDM acoustic sensors, and the ALADDIN PVDF detectors onboard SSSAT and IKAROS as well as the CLOTH PVDF integrated within MLI thermal blankets onboard EQUULEUS.  All of them are involved in hypervelocity impact calibration experiments and simulations so Hajime has developed stable shotgun techniques for microparticle impacts with two-stage light gas guns at the University of Kent in the U.K., NASA Johnson Space Center in the U.S.A., and ISAS in Japan.    ALADDIN onboard the world’s first interplanetary solar sail IKAROS deployed a 0.54 m2 detection area of cosmic dust impacts; it is the largest dedicated dust detector in the history of solar system exploration and has yielded the finest structure of dust distribution ever between the Earth and Venus.  Hajime has also collaborated with MIT ISN to upgrade the LIPIT dust accelerator for impact calibrations of space instrumentation.  He is now the science lead of the dust impact bumper for JAXA's B1 spacecraft in the Comet Interceptor mission.

 

Intact capture of meteoroids was attempted by foil stuck or aerogel modules used on LDEF, EuReCa, Stardust, Tanpopo, and Tanpopo-2. Hajime was also involved in the development of an ice-melting dust collection device for Japan’s first Antarctic micrometeorite expedition in 1999.  He is now advancing these experiences for future mission concepts like a sample return from Saturn's ring dust and Enceladus’ icy plume as well as impact ejecta from interstellar objects.

 

Also noted is Hayabusa-1&2’s asteroid surface sampling device that resulted in the world’s first asteroid sample return from Itokawa in 2010 and the second of its kind from Ryugu in 2020.  This impact sampling technique that Hajime and his team developed is a robust system suitable for almost any unknown surface conditions of an airless solid body.  Upon the sampling attempt on Itokawa by the Hayabusa-1, Hajime and his colleagues discovered evidence of granular migration on such a small body, which revolutionized ideas of their surface activities and created a new research field of “microgravity geology”.  As future sample return missions are more inclined to organic and volatile-rich small bodies, he is also contributing in the fields of astrobiology, planetary protection, and microgravity experiments.

 

As an educator, Hajime has given a number of classes and lectures for planetary science, astronautical engineering, and project management in universities and institutes worldwide.  He has supervised dozens of Masters and Ph.D. students as well as domestic interns and international students in the field of solar system science and exploration at ISAS.

 

In the international academic community, Hajime has served leading positions in organizing numerous scientific meetings in the collaboration with COSPAR, IAA, IAU, ISTS, and space agencies.  He was the chair of the inaugural meeting of the International Primitive Body Exploration Working Group (IPEWG) in 2008 and the first Asian vice chair of the COSPAR Planetary Protection Panel (PPP) in 2014-2018.  At present, he is the IAA Academician as well as the secretary of the IAA Space Physical Science Commission.  Since 2022, he has been serving as the Chair of the COSPAR Scientific Commission-B on "Space Studies of the Earth-Moon System, Planets, and Small Bodies of the Solar System".

The main belt carbonaceous (B/Cb) asteroid 1995 WF2 is named 8906 Yano.


Awards

 48

Papers

 315
  • Lewis J. Pinault, Ian A. Crawford, Hajime Yano
    npj Space Exploration, 2(1), Jan 21, 2026  Peer-reviewedLast author
    Detecting and cataloguing spacecraft hardware on the lunar surface remains challenging even after six decades of exploration. We present a lightweight computer vision system, YOLO-ETA (You-Only-Look-Once – Extraterrestrial Artefact), adapted from TinyYOLOv2 for identifying anthropogenic objects in high-resolution Lunar Reconnaissance Orbiter Camera (LROC) imagery. Trained on Apollo landing-site data, YOLO-ETA achieved balanced precision–recall (F1 ≈ 0.60) and an 80% mean confidence score for lander detections in previously unseen images and correctly localised the Luna 16 spacecraft. Applying the model to a 5 × 5 km region surrounding the historically uncertain Luna 9 landing area yielded several high-confidence detections of artificial objects near 7.03° N, –64.33° E. Topographic analysis indicates that the candidate site’s horizon geometry is potentially consistent with Luna 9 surface panoramas. These findings identify promising locations for follow-up imaging and demonstrate that compact, edge-deployable machine-learning models can support future orbital surveys of lunar artefacts and surface assets.
  • Kai Ito, Hajime Yano, Ryoya Sano, Yasuyuki Miyazaki, Sunao Hasegawa, Ryu Funase, Kazuyoshi Arai
    2026  
  • André Galli, Heather Smith, Michel Blanc, Bernard Foing, Hélène Boithias, Scott J. Bolton, Soyoung Chung, Athena Coustenis, Eric Dautriat, Jean-Pierre de Vera, Peter Doran, François Dubrulle, Fatemeh Fazel Hesar, Carolin Frueh, Shaifali Garg, Niklas Hedman, Kyeong J. Kim, Stéphanie Lizy-Destrez, Andreas Losch, Alessandra Marino, Christopher McKay, Patrick Michel, Olivier Mousis, Antonino Salmeri, Udit Shah, Shine S. R., Michael Sims, Jean-Claude Worms, Hajime Yano
    Life Sciences in Space Research, Dec 18, 2025  Peer-reviewedLast author
    In response to the growing importance of space exploration, the objectives of the COSPAR Panel on Exploration (PEX) are to provide high quality, independent science input to support the development of a global space exploration program, to promote space sciences as a key element of this program, to contribute to maximize its scientific return via enhanced international cooperation, and to take action to safeguard the scientific assets of solar system bodies. This paper summarizes the presentations of the two panel sessions at the COSPAR assembly 2024 and identifies the most intensely discussed recent topics of interest or concern for space exploration. These topics include environment stewardship of celestial bodies, space debris, resource utilization, the Moon, Mars, and other celestial bodies that we want to explore with planetary protection measures, preservation of dark and quiet skies, potential atmospheric pollution, space as an independent goal of sustainable development, human spaceflight, agile and affordable space programs, and the early preparation of a new edition of the COSPAR exploration roadmap.
  • Matthew J. Genge, Natasha V. Almeida, Matthias van Ginneken, Lewis Pinault, Tobias Salge, Penelope J. Wozniakiewicz, Hajime Yano, Steven J. Desch
    Nature Communications, 16(6466), Jul 23, 2025  Peer-reviewed
    Chondrules are a characteristic feature of primitive Solar System materials and are common in all primitive meteorites except the CI-chondrites. They are thought to form owing to melting of solid dust aggregates by energetic processing within the solar nebula and thus record fundamental processes within protoplanetary disks. We report the discovery of abundant altered microchondrules (>350 ppm) with modal sizes of 6–8 µm within sample A0180 from C-type asteroid Ryugu. These microchondrules have similar log-normal size and shape distributions to normal-sized chondrules, implying evolution by similar size-sorting. We suggest here formation of microchondrules in an outer Solar System chondrule factory, located in the Jovian pressure-bump, followed by turbulent diffusion and concentration relative to chondrules by intense turbulence. Meridional flows could have also separated microchondrules from chondrules and deliver them sunwards of the pressure bump via Lindblad torque flows. Contrary to conventional wisdom, we thus propose that the concentration of fine-grained, unprocessed grains could mean the most primitive asteroids did not have to form at the largest heliocentric distances.
  • Akira Tsuchiyama, Mizuho Nishi, Hajime Yano, Junya Matsuno, Takaaki Noguchi, Kyoko Okudaira, Akira Miyake, Kentaro Uesugi, Akihisa Takeuchi, Tsukasa Nakano, Yoshitaka Bessho, Hikaru Yabuta, Hajime Mita, Eiichi Imai, Makoto Tabata, Masumi Higashide, Hirofumi Hashimoto, Akihiko Yamagishi
    SPring-8/SACLA Scientific Research Report, 13(3) 106-121, Jun 30, 2025  Peer-reviewedInvited

Misc.

 494
  • Yamagishi A., Kobayashi K., Yokobori S., Yano H., Hashimoto H.
    Viva origino, 37 31-31, 2009  
  • 小林憲正, 伏見英彦, 金子竹男, 田端誠, 河合秀幸, 三田肇, 林宣宏, 藪田ひかる, 矢野創, 奥平恭子, 橋本博文, 横堀伸一, 山岸明彦
    日本惑星科学会秋季講演会予稿集(Web), 2009 53-53, 2009  
  • Tsuchiyama Akira, Mashio Etsuko, Imai Yuta, Noguchi Taakaaki, Miura Yayoi, Yano Hajime, Nakamura Tomoki
    Abstracts for Annual Meeting of Japan Association of Mineralogical Sciences, 2009 216-216, 2009  
    Tensile strengths of small pieces (∼100 μm) of carbonaceous chondrites (Murchison, Murray, Ivuna, Orgueil, and Targish Lake) were successively measured using a micro compression testing machine. The mean strengths are about 1-5 MPa and have a tendency of CM>CI>TL. The tensile strengths of seven scoriaceous micrometeorites (4 to 40 MPa) are larger than those of carbonaceous chondrites. Comparison with the strength of larger samples of Murchison may indicate a small size dependency.
  • Kawaguchi Yuko, Kawai Hideyuki, Narumi Issay, Hayashi Nobuhiro, Yoshida Satoshi, Yano Hajime, Hashimoto Hirofumi, Yamashita Masamichi, Kobayashi Kensei, Yamagishi Akihiko, Yang Yinjie, Sugino Tomohiro, Fujisaki Kenta, Yokobori shin-ichi, Yoshimura Yoshitaka, Tsuji Takashi, Okudaira Kyoko, Tabata Makoto
    Abstracts of Annual Meeting of the Geochemical Society of Japan, 56th 211-211, 2009  
    We proposed TANPOPO project, in which we are going to test possibilities of interplanetary migration of microbes and organic compounds on ISS. Ultra low-density aerogel will be used to capture micrometeoroids debris and other microparticles. Particles captured by aerogel will be used for several chemical/biological analyses after the initial inspection of the gel and tracks. The particles will be analyzed for mineralogical, organic and microbiological characteristics. In order to, we verify possibilities of microbes viable under the space environment, we are going to test to expose microbes on ISS.We investigate a method of detection the microbes from the particles caught by earogel and the survival rates of microbe etc. under the condition that simulated an extreme environment of the space.
  • 横堀伸一, 藤崎健太, 河口優子, YANG Yinjie, 伏見英彦, 橋本博文, 山下雅道, 矢野創, 奥平恭子, 林宣宏, 吉村義隆, 鳴海一成, 丸茂克美, 小林憲正, 山岸明彦
    イオンビーム育種研究会大会講演要旨集, 6th 11-12, 2009  
  • Fushimi Hidehiko, Kobayashi Kensei, Yamagishi Akihiko, Tanpopo WG, Kaneko Takeo, Kawai Hideyuki, Marumo Katsumi, Yokobori Shin-ichi, Mita Hajime, Hayashi Norihiro, Tabata Makoto, Yano Hajime
    Abstracts of Annual Meeting of the Geochemical Society of Japan, 56th 272-272, 2009  
    Space dusts are promising candidates for the delivery of extraterrestrial organics to the primitive Earth. It is necessary to capture them out of the terrestrial bisophere. We are planning to capture space dusts on the Exposed Facility of Japanese Experimental Module of International Space Station. We examine the possibility of detection of amino acids in captured space dusts by using ultra-low density silica gel (aerogel). Alpha-aminoisobutyric acid and isovaline, both are non-proteinous amino acids detected in Murchison meteorite, would be target molecules to detect.
  • 野上謙一, 宮地孝, 岩井岳夫, 柴田裕実, 大橋英雄, 佐々木晶, 南繁行, 武智誠次, 河内祐也, 篠原悠紀, 矢野創, 藤井雅之
    UTNL-R(東京大学大学院工学系研究科原子力専攻), (0476) 85-86, 2009  
  • Takagi Yasuhiko, Yano Hajime, Hasegawa Sunao, Miyamoto Hideaki, Sugita Seiji, Demura Hirohide, Hirata Naru, Michikami Tatsuhiro
    宇宙利用シンポジウム, 25th(25) 256-257, 2009  
    Microgravity experiments are important for studies of surface phenomena (e.g., impact cratering, regolith migration and sorting) on the solar system small bodies. We are investigating the method, devices, and sample materials of these experiments. The creation of "Microgravity Geology" is expected.
  • 山岸明彦, 横堀伸一, 小林憲正, 山下雅道, 橋本博文, 矢野創, 長谷川直, 河合秀幸, 田端誠, 中嶋悟, 癸生川陽子, 藪田ひかる, 奥平恭子, 丸茂克美, 奈良岡浩, 三田肇
    宇宙利用シンポジウム, 25th(Supplement) 192-194, 2009  
  • 元岡範純, 矢野創, 川口淳一郎
    アストロダイナミクスシンポジウム講演後刷り集(Web), 18th 43 (WEB ONLY), 2009  
  • 川口淳一郎, 森本睦子, 川勝康弘, 松岡正敏, 矢野創, 吉川真
    アストロダイナミクスシンポジウム講演後刷り集(Web), 18th 13 (WEB ONLY), 2009  
  • 三和裕一, 矢野創, 森本睦子, 森治, 川口淳一郎
    アストロダイナミクスシンポジウム講演後刷り集(Web), 18th 11 (WEB ONLY), 2009  
  • Fushimi Hidehiko, Yabushita Sayaka, Kaneko Takeo, Okudaira Kyoko, Tabata Makoto, Kawai Hideyuki, Marumo Katsumi, Yokobori Shinichi, Yano Tsukuru, Kobayashi Kensei, Yamagishi Akihiko
    Viva origino, 37 46-46, 2009  
    Space dusts are promising candidates for the delivery of extraterrestrial organics to the primitive Earth. It is necessary to capture them out of the terrestrial bisophere. We are planning to capture space dusts on the Exposed Facility of Japanese Experimental Module of International Space Station. We examine the possibility of detection of amino acids in captured space dusts by using ultra-low density silica gel (aerogel). Alpha-aminoisobutyric acid and isovaline, both are non-proteinous amino acids detected in Murchison meteorite, would be target molecules to detect.
  • 吉川真, 山口智宏, 照井冬人, 津田雄一, 尾川順子, 森治, 船瀬龍, 竹内央, 森本睦子, 岡本千里, BELLEROSE Julie, 矢野創, 川口淳一郎
    日本天文学会年会講演予稿集, 2009 96, 2009  
  • Iwai Takeo, Nogami Kenichi, GRÜN Eberhard, Srama Ralf, Nakamura Maki, Ohashi Hideo, Shibata Hiromi, Miyachi Takashi, Takechi Seiji, Yano Hajime, Sasaki Sho, Fujii Masayuki
    Proceedings of Annual / Fall Meetings of Atomic Energy Society of Japan, 2009 155-155, 2009  
    ベピコロンボ日欧共同水星探査計画における水星磁気圏探査機に搭載予定の圧電素子型宇宙塵計測器(MDM)では、探査期間において-140~170℃程度の間で温度が変動する。その温度変動がPZTセンサーのレスポンスにどのように影響するかを評価する必要があり、そのためのバンデグラフを用いた微粒子加速による温度特性評価実験を中心に報告する。
  • Kobayashi, K, Hashimoto, H, Kawai, H, Mita, H, Okudaira, K, Yamagishi, A, Yamashita, M, Yano, H, Yokobori, S
    CAREX Workshop: Priority for Environment-Specific Technological Developments and Infrastructures, Dec, 2008  
  • Yuichi Miwa, Hajime Yano, Mutsuko Morimoto, Osamu Mori, Jun'Ichiro Kawaguchi
    International Astronautical Federation - 59th International Astronautical Congress 2008, IAC 2008, 7 4445-4453, Dec 1, 2008  
  • Makoto Yoshikawa, Hajime Yano, Masanao Abe, Junichiro Kawaguchi
    International Astronautical Federation - 59th International Astronautical Congress 2008, IAC 2008, 3 1512-1519, Dec 1, 2008  
  • 柴田 裕実, 大橋 英雄, 佐々木 晶, 野上 謙一, 藤井 雅之, 岩井 岳夫, 尾亦 孝男, グリュン エバハルト, スラマ ラルフ
    日本惑星科学会秋期講演会予稿集, 2008 100-100, Nov 1, 2008  
  • Kobayashi, K, Mita, H, Nakashima, S, Naraoka, H, Hashimoto, H, Okudaira, K, Yano, H, Yamashita, M, Yokobori, S, Yamagishi, A
    37th Committee on Space Research(COSPAR) Scientific Assembly, Jul, 2008  
  • Ohashi Hideo, Sasaki Sho, Hirai Takayuki, Shibata Hiromi, Nogami Kenichi, Iwai Takeo
    (7) 75-78, Mar 31, 2008  
  • 矢野創
    AFSニュース, 128(Winter) 8-8, Jan, 2008  InvitedLead author
    活躍するリターニー: 現在、私は宇宙航空研究開発 機 構 (JAXA)の 一 員として、2003 年に打上げ、小惑星のかけらを採取し、2010 年に地球に帰還させる「はやぶさ」プロジェクトに、科学者兼運用責任者として携わっています。同時に将来の太陽系探査機や国際宇宙ステーション曝露部実験などの研究開発や、大学院生の指導も行っています。
  • Demura, H, Hamada, Y, Suzuki, M, Hirata, N, Asada, N, Naraoka, H, Mita, H, Yoshikawa, M, Yano, H, Yoshimitsu, T, Iwata, T, Subgroup of, Surface Science Instrument, Package (SSP) in Small Body Exploration WG
    1st International Primitive Body Exploration Working Group, Jan, 2008  
  • Fujiwara Ken, Yamanaka Tomio, Nishida Junichi, Matunaga Saburo, Yano Hajime, Mori Osamu
    The Proceedings of the Space Engineering Conference, 2007 29-34, 2008  
    Laboratory for Space Systems, Tokyo Institute of Technology and JAXA/ISAS have proposed tethered sampling method for future asteroid sample returning mission. The tethered sampling mission consists of three procedures: shooting a tethered sampler, a corer, at a high velocity, penetrating the corer into a surface and collecting soil inside, and reeling in the tether and retrieving the corer and soil. This paper reports a dynamics model of tethered corer and tether deployment experiments. The experiment results show validity of the model and effect of bobbin shapes and projection directions on corer and tether behavior which directly give guidelines to system design of corer projection.
  • Yano Hajime
    Abstracts of Annual Meeting of the Geochemical Society of Japan, 55 291-291, 2008  
    test
  • Yamagishi Akihiko, Yano Sou, Kobayashi Norimasa, Yokobori Shinichi, Kawai Hideyuki, Hashimoto Hiroyuki, Yamashita Masamichi
    Abstracts of Annual Meeting of the Geochemical Society of Japan, 55th 3-3, 2008  
    TANPOPO, dandelion, is the name of a grass whose seeds with floss are spread by the wind. We propose the analyses of interplanetary migration of microbes, organic compounds and meteoroids on ISS-JEM. Ultra low-density aerogel will be used to capture micrometeoroid and debris. Particles captured by aerogel will be used for several analyses after the initial inspection of the gel and tracks. Careful analysis of the tracks in the aerogel will provide the size and velocity dependence of debris flux. The particles will be analyzed for mineralogical, organic and microbiological characteristics. To test the survival of microbes in space environment, microbial cells will be exposed. Organic compounds are also exposed to evaluate the possible denaturation under the conditions. Aerogels are ready for production in Japan. Aerogels and trays are space proven. All the analytical techniques are ready.
  • Okudaira Kyoko, Noguchi Takaaki, Hasegawa Sunao, Yano Hajime, Tabata Makoto, Nakamura Tomoki, Yamagishi Akihiko
    Abstracts of Annual Meeting of the Geochemical Society of Japan, 55th 177-177, 2008  
    We report on our hypervelocity capture experiments for sample return missions using silica aerogels as capture media. Since aerogels are excellent thermal insulator, there is a possibility that samples might be thermally altered upon capturing. Thus empirical simulation in the lab is essential for rigorous examination of the captured samples. We fired hydrated phyllosilicate mineral particles which were susceptible to heat into aerogel by using two-stage light gas guns. After extraction from aerogel, several kinds of analyses were given to the samples to evaluate their alteration. We introduce results of our previous studies as well as those of preliminary experiments for TANPOPO mission.
  • 野上謙一, 宮地孝, 岩井岳夫, 柴田裕実, 大橋英雄, 佐々木晶, 南繁行, 武智誠次, 河内祐也, 篠原悠紀, 矢野創, 藤井雅之
    UTNL-R(東京大学大学院工学系研究科原子力専攻), (0473) 76-77, 2008  
  • 吉川真, 矢野創, 川口淳一郎, BARUCCI M. A, MICHEL P
    日本天文学会年会講演予稿集, 2008 103, 2008  
  • 松永三郎, 野口高明, 矢野創, 藤井裕矩, 真壁輝夫, 真壁輝夫, 三浦弥生, 宮本英昭
    太陽系科学シンポジウム, 29th 64-67, 2008  
  • Sasaki Sho, Ohashi Hideo, Shibata Hiromi, Iwai Takeo, Nogami Kenichi, Yoshikawa Makoto, Yano Hajime, Hasegawa Sunao, Matsumoto Haruhisa, Fujii Masayuki
    宇宙利用シンポジウム, 24th 62-63, 2008  
    A large area dust detector has been developed for detecting dust and debris particles around the Earth. Plane-parallel impact ionization detectors have been developed and we confirmed their capability of detecting interplanetary and interstellar dust particles.
  • Yamagishi Akihiko, Yokobori Shinichi, Kawaguchi Jutaro, Yang Yinjie, Kobayashi Kensei, Yabushita Sayaka, Fujisaki Kenta, Yano Hajime, Yamashita Masamichi, Okudaira Kyoko
    宇宙利用シンポジウム, 24th 218-221, 2008  
    TANPOPO, dandelion, is the name of a grass whose seeds with floss are spread by the wind. We propose the analyses of interplanetary migration of microbes, organic compounds and meteoroids on ISS (International Space Station)-JEM (Japanese Experiment Module). Ultra low-density aerogel will be used to capture micrometeoroid and debris. Particles captured by aerogel will be used for several analyses after the initial inspection of the gel and tracks. Careful analysis of the tracks in the aerogel will provide the size and velocity dependence of debris flux. The particles will be analyzed for mineralogical, organic and microbiological characteristics. To test the survival of microbes in space environment, microbial cells will be exposed. Organic compounds are also exposed to evaluate the possible denaturation under the conditions. Aerogels are ready for production in Japan. Aerogels and trays are space proven. All the analytical techniques are ready.
  • Takagi Yasuhiko, Hasegawa Sunao, Yano Hajime, Sugita Seiji, Miyamoto Hideaki
    宇宙利用シンポジウム, 24th 181-182, 2008  
    Microgravity experiments are important for studies of surface phenomena (e.g., impact cratering, regolith migration and sorting) on the solar system small bodies. We are investigating the method, devices, and sample materials of these experiments.
  • 山中富夫, 藤原謙, 前野正樹, 西田淳一, 松永三郎, 矢野創, 中谷幸司, 森治
    アストロダイナミクスシンポジウム講演後刷り集(Web), 17th 46 (WEB ONLY), 2008  
  • 三和裕一, 矢野創, 森本睦子, 森治, 川口淳一郎
    アストロダイナミクスシンポジウム講演後刷り集(Web), 17th 15 (WEB ONLY), 2008  
  • 西田淳一, 藤原謙, 松永三郎, 矢野創, 中谷幸司, 森治
    アストロダイナミクスシンポジウム講演後刷り集(Web), 17th 47 (WEB ONLY), 2008  
  • 薮下さやか, 小林憲正, 奥平恭子, 矢野創, 山岸明彦
    Viva Origino, 36(Supplement) 12, 2008  
  • 山岸明彦, 小林憲正, 横堀伸一, 矢野創, 橋本博文, 山下雅道
    Viva Origino, 36(Supplement) 7, 2008  
  • 矢野創, 田端誠, 河合秀幸, 奥平恭子, 山岸明彦
    Viva Origino, 36(Supplement) 9, 2008  
  • Iwai Takeo, Fujii Masayuki, Takechi Seiji, Minami Shigeyuki, Srama Ralf, Grun Eberhard, Nogami Kenichi, Miyachi Takashi, Ohashi Hideo, Shibata Hiromi, Hasegawa Sunao, Omata Takao, Sasaki Sho, Yano Hajime
    Proceedings of Annual / Fall Meetings of Atomic Energy Society of Japan, 2008 151-151, 2008  
    東京大学重照射研究設備は、1ミクロン程度の微粒子を数km/sを超える速度まで加速できる世界でも数少ない静電加速器施設である。これを用いて開発中の宇宙塵検出器の現状について報告する。
  • 小林憲正, 藪下さやか, 藤崎健太, 金子竹男, 三田肇, 奥平恭子, 矢野創, 橋本博文, 横堀伸一, 山岸明彦
    分析化学討論会講演要旨集, 69th 3, 2008  
  • 山岸明彦, 横堀伸一, 坂井伸伍, 阿部勇理也, 東正希, 小林憲正, 藪下さやか, 藤崎健太, 矢野創, 山下雅道, 奥平恭子, 長谷川直, 河合秀幸, 田端誠, 中嶋悟, 癸生川陽子, 鈴木彰子, 三田肇, 丸茂克美
    スペース・プラズマ研究会, 2007 127-129, 2008  
  • 長谷川直, 矢野創, 加藤明, 川北史朗, 松本晴久, 仁田工美, 瀬藤真人, 小野瀬直美, 元屋敷清子, 奥平恭子, 佐藤英一, 佐々木進
    スペース・プラズマ研究会, 2007 134-137, 2008  
  • YOKOBORI Shinichi
    大気環境学会年会講演要旨集, 49th(49) 67-68, 2008  
  • Fujii Masayuki, Miyachi Takashi, Minami Shigeyuki, Onishi Toshiyuki, Takechi Seiji, Iwai Takeo, Nogami Kenichi, Ohashi Hideo, Shibata Hiromi, Grun Eberhard
    171-174, Mar, 2007  
    Detector characteristics of a piezoelectric PZT (Lead-Zirconate-Titanate) element were studied by bombarding hypervelocity iron particles in the velocity ranging from 10 km/s to 55 km/s. The rise time of the output form decreased as a function of velocity during collision. The amplitude seemed increasing with the velocity above 30 km/s. The sensitivity depended on the incident angle. An effect of cross-talk was not significantly observed in the dodecahedral structure. The PZT element was promising as a detector that was open to 4 pi solid angle and operated in real time.
  • 横堀伸一, 山岸明彦, 川口寿太郎, Yang Yinjie, 奥平恭子, 矢野創, 小林憲正, 丸茂克美, 山下雅道
    平成18年度スペース・プラズマ研究会報告, 84-87, 2007  
  • Yano Hajime, Noguchi Takaaki, Makabe Teruo, Higuchi Ken, Matsunaga Saburo, Fujii Hironori, Miura Yayoi, MinorbodyExploration WG-Sampling SG
    Abstracts for fall meeting of the Japanese Society for Planetary Science, 2007 108-108, 2007  
    In the Primitive Body Exploration Program of Japan, we are aiming for sample return missions, by following the Hayabusa's heritage, from surfaces and potentially sub-surfaces of C-type asteroids and CAT objects or D-type asteroids within the next decade. Thus we are currently developing new sampling systems suitable for such targets. In particular, the impact sampling system with corer projectiles and a microgravity tether retraction system as well as tape tether mechanism are evaluated in the microgravity condition. This study summarizes results of those endeavors and future prospects of this challenge.
  • 横田沙会子, 草川靖大, 土谷健一郎, 千葉竜太朗, 吉川信, 矢野創, 秋山演亮
    宇宙科学技術連合講演会講演集(CD-ROM), 51st 3J06, 2007  
  • 松永三郎, 西田淳一, 藤原謙, 中谷幸司, 矢野創, 森治
    構造強度に関する講演会講演集, 49th 169-171, 2007  
  • 松永三郎, 藤原謙, 山中富夫, 前野正樹, 西田淳一, 矢野創, 中谷幸司, 森治
    宇宙科学技術連合講演会講演集(CD-ROM), 51st 3D07, 2007  

Books and Other Publications

 35

Presentations

 590

Teaching Experience

 5

Research Projects

 42

Industrial Property Rights

 8

Academic Activities

 23
  • Planning, Management, etc., Panel moderator, Session chair, etc., Supervision (editorial), Review, evaluation
    OPENS-0 Pre-Project Preparation Team, JAXA/ISAS (JAXA/ISAS (Online)), Apr, 2025 - Present
    Scopes: Aiming to be launched in the late 2020s, the OPENS-0 is an engineering demonstration mission of key enabling technologies for a 100-kg class spacecraft to independently explore the outer planet region, e.g., Saturn's ring flyby. Inevitably, the spacecraft is limited in its resources and operational capabilities compared to legacy spacecraft. Thus, the OPENS-0 is designed to maximize its scientific output by employing "multi-purpose" instruments such as optical navigation cameras for observing zodiacal light, main belt asteroid morphology, and Saturn's ring structure. It is also planned to use the ultra-stable oscillator and deep space transponder for radio occultation of the solar flare, the planetary atmospheres, and Saturn's ring, as well as the PVDF-layered MLI for micrometeoroid flux at 1-10 AU heliocentric distance and dust structure in the vicinity of Saturn's ring. This workshop is aimed at the following three scopes. (1) The workshop will present the mission concept and its potential scientific opportunities of the OPENS-0 to the international science community at the earliest stage of the mission formulation. (2) The solicited talks will review outcomes from the cruising science investigations conducted by past and present deep space missions to provide lessons learned and remaining scientific challenges for the OPENS-0 mission. (3) The OPENS-0 team will identify potential candidates for the future OPENS-0 international science team among the participants who express their interest in joining the mission.
  • Supervision (editorial), Peer review, Others
    新興出版社啓林館, Jul, 2017 - Present
  • Planning, Management, etc., Panel moderator, Session chair, etc., Peer review
    International Academy of Astronautics (IAA), Apr, 2017 - Present
  • Planning, Management, etc., Panel moderator, Session chair, etc., Supervision (editorial), Review, evaluation
    Mar 2, 2026 - Mar 4, 2026
  • Planning, Management, etc., Panel moderator, Session chair, etc., Supervision (editorial), Review, evaluation
    Committee of Space Research(COSPAR) (Nicosia, Cyprus), Nov 3, 2025 - Nov 7, 2025
    Building on the success of the B3.2 Scientific Event at the 2024 COSPAR Scientific Assembly in Busan, this Scientific Event brings together COSPAR scientists and new space participants to advance new research opportunities on the Moon, in Earth orbit, and across deep space. The year 2025 has seen the first fully successful commercial landing on the Moon, with more possibly following before this symposium. New science and data opportunities range from lunar subsurface thermal properties, electrodynamic dust interactions, and studies of the interaction of solar wind and Earth's magnetic field, to experiments in resource beneficiation and new electrolytic processes on the lunar surface. Near-Earth objects are now targets of the off-Earth mining industry and planetary defense for both governmental and private sectors. Deep space exploration to Mars and beyond also involves emerging space agencies, and CubeSats and small sats are rapidly being utilized for their missions. New space startups are also introducing new data gathering capabilities from Earth orbit, including a fusion of new sensor and communication technology for monitoring, analysing, and mitigating natural and human hazards on Earth. This event will highlight the technology gaps that current space science can address by promoting collaborations and partnerships among new space entrepreneurs, the COSPAR Associates community, established space agencies, and legacy industry players.

Social Activities

 3

Media Coverage

 79

Other

 10

教育内容やその他の工夫

 1
  • Date(From)
    2012/04/01
    Subjcet
    LABAM: Laboratory for Astrobiology and Astromaterial
    Summary
    研究室理念: 宇宙塵をキーワードとする宇宙探査・実験によって可能となるアストロバイオロジーと地球外物質研究を融合して、惑星系、地球型惑星、生命の起源と進化を実証的に解明することを目指すとともに、近隣の学際研究への応用・連携を通じて人類社会の持続的なフロンティア拡大に貢献する。

その他教育活動上特記すべき事項

 10
  • Date(From)
    2023/04
    Subjcet
    総合研究大学院大学・先端学術院・宇宙科学コース(併任)
    Summary
    助教:矢野創
    (継続中)
  • Date(From)
    2019/04
    Subjcet
    九州工業大学 工学部宇宙システム工学科 (兼任)
    Summary
    非常勤講師:矢野創
    (継続中)
  • Date(From)
    2019/04
    Subjcet
    慶応義塾大学 先端生命科学研究所(兼任)
    Summary
    訪問准教授: 矢野創
    (継続中)
  • Date(From)
    2017/04
    Date(To)
    2020/03
    Subjcet
    東京大学大学院 工学系研究科航空宇宙工学専攻(兼任)
    Summary
    非常勤講師:矢野創
  • Date(From)
    2016/04
    Subjcet
    法政大学大学院 理工学研究科(併任)
    Summary
    連携准教授: 矢野創
    JAXA-法政大学連携大学院協定に基づく。(継続中)
    2016-2023年は客員准教授。
  • Date(From)
    2012/04
    Subjcet
    JAXA宇宙科学研究所・学際科学研究系・宇宙生命物質科学研究室(本務)
    Summary
    助教:矢野創
    (継続中)
  • Date(From)
    2010/09
    Subjcet
    慶応義塾大学大学院 システムデザインマネジメント研究科(兼任)
    Summary
    特別招聘准教授: 矢野創
    (継続中)
  • Date(From)
    2003/10
    Date(To)
    2023/03
    Subjcet
    総合研究大学院大学・物理科学研究科・宇宙科学専攻(併任)
    Summary
    助教: 矢野創
  • Date(From)
    2003/10
    Date(To)
    2012/03
    Subjcet
    JAXA宇宙科学研究所・太陽系科学研究系(本務)
    Summary
    助教:矢野創
  • Date(From)
    1999/05
    Date(To)
    2003/09
    Subjcet
    文部科学省宇宙科学研究所・惑星科学研究系(本務)
    Summary
    教授: 藤原顕
    助手: 安部正真、矢野創

● 指導学生等の数

 8
  • Fiscal Year
    2025年度(FY2025)
    Doctoral program
    1
    Master’s program
    6
    Students under Cooperative Graduate School System
    6
    Students under Skills Acquisition System
    2
    JSPS Research Fellowship (Young Scientists)
    1
  • Fiscal Year
    2024年度(FY2024)
    Doctoral program
    1
    Master’s program
    5
    Students under Cooperative Graduate School System
    5
    Students under Skills Acquisition System
    3
    Internship students
    1
    JSPS Research Fellowship (Young Scientists)
    1
    Others
    インターンは総研大国際オリエンテーション制度による留学生(イタリア/スウェーデン)
  • Fiscal Year
    2023年度(FY2023)
    Doctoral program
    1
    Master’s program
    3
    Students under Cooperative Graduate School System
    3
    Students under Skills Acquisition System
    3
    JSPS Research Fellowship (Young Scientists)
    1
    Others
    留学生: 1
  • Fiscal Year
    2022年度(FY2022)
    Doctoral program
    1
    Master’s program
    2
    Students under Cooperative Graduate School System
    2
    Students under Skills Acquisition System
    2
  • Fiscal Year
    2021年度(FY2021)
    Doctoral program
    1
    Master’s program
    3
    Students under Cooperative Graduate School System
    3
    Students under Skills Acquisition System
    1
  • Fiscal Year
    2020年度(FY2020)
    Master’s program
    5
    Students under Cooperative Graduate School System
    5
    Students under Skills Acquisition System
    1
  • Fiscal Year
    2019年度(FY2019)
    Master’s program
    6
    Students under Cooperative Graduate School System
    6
    Students under Skills Acquisition System
    2
  • Fiscal Year
    2018年度(FY2018)
    Master’s program
    5
    Students under Cooperative Graduate School System
    5
    Students under Skills Acquisition System
    2
    Others
    留学生:1

● 指導学生の表彰・受賞

 8
  • Student Name
    中澤淳一郎
    Student affiliation
    総合研究大学院大学
    Award
    日本学術振興会若手研究者海外挑戦プログラム
    Date
    2025年3月-8月
  • Student Name
    中澤淳一郎
    Student affiliation
    総合研究大学院大学
    Award
    総合研究大学院大学研究派遣プログラム
    Date
    2025年2月ー3月
  • Student Name
    中澤淳一郎
    Student affiliation
    総合研究大学院大学
    Award
    トビタテ留学日本代表プログラム
    Date
    2025年2月-2026年3月
  • Student Name
    中澤淳一郎
    Student affiliation
    総合研究大学院大学
    Award
    第32回衛星設計コンテスト・アイデア大賞「氷衛星への超小型衝突探査機ICICLEs」
    Date
    2024年11月
  • Student Name
    中澤淳一郎
    Student affiliation
    総合研究大学院大学
    Award
    日本学術振興会特別研究員(DC)
    Date
    2023年4月-2026年3月
  • Student Name
    中澤淳一郎
    Student affiliation
    総合研究大学院大学
    Award
    帝人久村奨学金授与、公益財団法人帝人奨学会
    Date
    2023年4月
  • Student Name
    中澤淳一郎
    Student affiliation
    総合研究大学院大学
    Award
    帝人久村奨学金授与、公益財団法人帝人奨学会
    Date
    2021年6月
  • Student Name
    芹澤遼太
    Student affiliation
    法政大学大学院(ISAS連携大学院生)
    Award
    COSPAR Student Travel Grant Award、COSPAR, 彗星サンプルリターンを目指したCNT微粒子捕集材の実験的研究と数値解析による形状設計
    Date
    2020年7月

● 指導学生の顕著な論文

 26
  • Student name
    Seira MOROZUMI
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2025)
    Title
    原子状酸素が存在するISSきぼう曝露部の垂直配向カーボンナノチューブによる低速衝突物の捕集性能と捕集物の調査
  • Student name
    Ryoya SANO
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2025)
    Title
    スペースデブリ防御バンパーにおけるAl合金およびAFRP中間材の比較検討
  • Student name
    Gaia Lucrezia DALLA PRIA
    Student affiliation
    Lulea University of Technology, Sweden
    Author(s), journal, volume number, pagination (year of publication)
    Special Assignment in Space Science and Technology as a Part of Master's Degree (2025)
    Title
    Microscopic Analysis of Low-velocity Impact Signatures on the Tanpopo-2 Aerogel Panels and Possible Origin
  • Student name
    Shoya IWATA
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2024)
    Title
    Smart MLI宇宙実証機の地上校正による有効性検証と地球―月圏ダスト分布計測
  • Student name
    Simon MAILLOT
    Student affiliation
    仏・高等科学技術学院(IPSA)
    Author(s), journal, volume number, pagination (year of publication)
    Engineering-level Internship Report as a Partial Filfullment of the MEng. Degree(2023)
    Title
    Modelling of Hypervelocity Impact Microparticle Environment for the EQUULEUS Mission
  • Student name
    中澤 淳一郎
    Student affiliation
    総合研究大学院大学
    Author(s), journal, volume number, pagination (year of publication)
    特別研究I・修士論文相当(2023)
    Title
    固体微粒子の超高速衝突により生じる破砕・昇華・電離物質の包括的な捕集システムの開発
  • Student name
    和久井 穀貴
    Student affiliation
    法政大学大学院理工学研究科(連携大学院生)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2023)
    Title
    たんぽぽ プロジェクト 1 および 2 の捕集パネルから 導く微粒子の衝突エネルギ推定と経年変化
  • Student name
    Kota ISAWA
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2022)
    Title
    エアロゲルによる宇宙固体微粒子の衝突捕集に関する実験および数値解析
  • Student name
    Yuki TAKEDA
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2022)
    Title
    宇宙往還した垂直配向カーボンナノチューブによる低速衝突不定形粒子の捕集
  • Student name
    Ryota SERIZAWA
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2021)
    Title
    彗星サンプルリターンを目指したCNT微粒子捕集材の実験的研究と数値解析による形状設計
  • Student name
    Kosuke KANDO
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2021)
    Title
    宇宙科学研究に向けたレーザー励起微粒子衝突実験装置射出部の最適化
  • Student name
    Erika MINAKAMI
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2021)
    Title
    微粒子環境モデルの更新に向けたたんぽぽ捕集パネル 構造部上の衝突痕分析
  • Student name
    Keita YAMAMOTO
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2020)
    Title
    ISSに搭載されたエアロゲル捕集材による超高速微粒子衝突頻度の経年変化に及ぼす二次イジェクタと遮蔽効果の影響
  • Student name
    Shuto OIZUMI
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2020)
    Title
    彗星ランデブーサンプルリターンを目指した垂直配向カーボンナノチューブの微粒子捕集性能の評価
  • Student name
    Haruki NAKANO
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2020)
    Title
    圧電性薄膜センサに衝突した微粒子の質量推定のための出力信号周波数分析
  • Student name
    Maximilian EITEL
    Student affiliation
    独・シュトッツガルト大学院
    Author(s), journal, volume number, pagination (year of publication)
    技術研修報告書(2019)
    Title
    Tanpopo Particle Impact Analysis
  • Student name
    Eigo ISHIKAWA
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2019)
    Title
    小天体ランデブーミッションに向けた低中速衝突ダストの検出回路の開発
  • Student name
    Ritsuko JITSUKAWA
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2019)
    Title
    多層断熱材一体型微粒子衝突センサの性能評価
  • Student name
    Maximilian SOMMER
    Student affiliation
    独・シュトッツガルト大学院(JSPSサマープログラム留学生)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2018)
    Title
    Modelling Resonant Features in the Zodiacal Cloud
  • Student name
    Hiroyuki MOCHIZUKI
    Student affiliation
    法政大学大学院理工学研究科(JAXA/ISAS連携大学院)
    Author(s), journal, volume number, pagination (year of publication)
    修士論文(2018)
    Title
    複層薄膜貫通型微粒子衝突センサへの信号積分回路付与による質量推定精度の向上

● 専任大学名

 1
  • Affiliation (university)
    総合研究大学院大学(SOKENDAI)

● 所属する所内委員会

 4
  • ISAS Committee
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  • ISAS Committee
    2023年6月-現在 科学データ利用委員会・委員
  • ISAS Committee
    2016年12月 - 2018年12月 宇宙理工学合同委員会下・宇宙科学の今後20年の構想を検討する委員会・委員
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    2006年4月 - 2019年3月 大学共同利用スペースプラズマ(現・超高速衝突実験)専門委員会・委員