研究者業績

内田 裕之

ウチダ ヒロユキ  (Hiroyuki Uchida)

基本情報

所属
国立研究開発法人宇宙航空研究開発機構 宇宙科学研究所 宇宙物理学研究系 准教授

J-GLOBAL ID
201401057770891957
researchmap会員ID
7000009489

論文

 130
  • Toshiki Sato, Shin-ichiro Fujimoto, Koji Mori, Jun Kurashima, Hiroshi Nakajima, Paul P. Plucinsky, Manan Agarwal, Liyi Gu, Adam Foster, Kai Matsunaga, Hiroyuki Uchida, Aya Bamba, Jacco Vink, Yukikatsu Terada, Hironori Matsumoto, Lia Corrales, Hiroshi Murakami, Satoru Katsuda, Makoto Sawada, Haruto Sonoda, Ehud Behar, Masahiro Ichihashi, Hiroya Yamaguchi
    The Astrophysical Journal 1001(1) 46-46 2026年4月3日  
    Abstract The elemental abundances of the Fe-peak elements (such as Cr, Mn, Fe, and Ni) and Ti are important for understanding the environment of explosive nuclear burning for the core-collapse supernovae (CCSNe). In particular, the supernova remnant Cassiopeia A (Cas A), which is well known for its asymmetric structure, contains three “Fe-rich blobs,” and the composition of the Fe-peak elements within these structures could be related to the asymmetry of the supernova explosion. We report a highly asymmetric distribution of the Fe-peak elements in Cas A as revealed by XRISM observations. We found that the southeastern Fe-rich region has a significant Mn emission above the 4 σ confidence level, while the northwestern Fe-rich region has no clear signature. In addition to the significant difference in Mn abundance across these regions, our observations show that the Ti/Fe, Mn/Cr, and Ni/Fe ratios vary from region to region. The observed asymmetric distribution of Fe-peak elements could be produced by (1) the mixing of materials from different burning layers of the supernova, (2) the asymmetric distribution of the electron fraction in the progenitor star, and/or (3) the local dependence of the neutrino irradiation in the supernova innermost region. Future spatially resolved spectroscopy of Cas A using X-ray microcalorimeters will enable more detailed measurements of the distribution and composition of these elements, providing a unique tool for testing asymmetric supernova physics.
  • Hikaru Uebayashi, Takeshi G. Tsuru, Teruaki Enoto, Hiroyuki Uchida, Ayumi Asai, Kosuke Namekata, Naoki Tsuji, Shun Inoue, Yohko Tsuboi, Tomokage Yoneyama, Haruka Sugai, Takahiro Seguchi, Toru Tamagawa, Yoshitomo Maeda, Daiki Ishi, Ryusei Komatsu, Seang Shim, Yusuke Sawanishi, Riko Shimizu, Takayuki Shihara, Tatsuya Narumi, Hideki Yoshikado, Raiki Kudo, Takuro Mito, Shota Ito, Masaki Numazawa
    UV, X-Ray, and Gamma-Ray Space Instrumentation for Astronomy XXIV 61-61 2025年9月29日  
  • Shun Inoue, Teruaki Enoto, Yuta Notsu, Hiroyuki Uchida, Wataru Buz Iwakiri, Kosuke Namekata, Keith Gendreau
    Monthly Notices of the Royal Astronomical Society 541(2) 1403-1418 2025年6月28日  
    ABSTRACT The Fe K$\alpha$ fluorescence line ($\sim 6.4$ keV) has been observed during solar and stellar flares. Two emission mechanisms of the Fe K$\alpha$ line, photoionization, and collisional ionization, have been discussed, and the aim of this work is to collect evidences for each mechanism employing a statistical correlation approach between the Fe K$\alpha$ line flux and rough flare properties. Here, we systematically searched the Neutron Star Interior Composition ExploreR (0.2–12 keV) archive data for the Fe K$\alpha$ line of RS Canum Venaticorum-type stars. Among our analysed 255 observation IDs with a total exposure of $\sim 700$ ks, we found 25 data sets (total $\sim 40$ ks) exhibiting the Fe K$\alpha$ emission line at 6.37–6.54 keV with its equivalent width of 44.3–578.4 eV: 18 observations during flares, six observations during unconfirmed possible flare candidates, and one at a quiescent phase. These observations indicate a positive correlation between the Fe K$\alpha$ line intensity ($L_{\rm{K \alpha } }$) and the 7.11–20 keV thermal plasma luminosity ($L_{\mathrm{HXR } }$) with its power-law index of $0.86 \pm 0.46$ (i.e. $L_{\mathrm{K \alpha } } \propto L_{\mathrm{HXR } }^{0.86\pm 0.46}$). This correlation in the range of the thermal plasma luminosity $10^{29-33}$ erg s$^{-1}$ is consistent with the photoionization origin of the line. On the other hand, the equivalent width of the Fe K$\alpha$ line ($\mathrm{EW}_{\mathrm{K \alpha } }$) has a negative correlation with the 7.11–20 keV thermal plasma luminosity with its power-law index of $-0.27 \pm 0.10$ (i.e. $\mathrm{EW}_{\mathrm{K \alpha } } \propto L_{\mathrm{HXR } }^{-0.27\pm 0.10}$). This anticorrelation is consistent with the decline of the fluorescence efficiency with increasing the stellar flare loop height. Furthermore, we found a signature of an absorption line at $6.38^{+0.03}_{-0.04}$ keV during a superflare of $\sigma$ Gem. The equivalent width of the line was $-34.7^{+2.03}_{-1.58}$ eV. We discuss the density of the Fe ions from the equivalent width using the curve of growth analysis.
  • Jacco Vink, Manan Agarwal, Aya Bamba, Liyi Gu, Paul Plucinsky, Ehud Behar, Lia Corrales, Adam Foster, Shin-ichiro Fujimoto, Masahiro Ichihashi, Kazuhiro Ichikawa, Satoru Katsuda, Hironori Matsumoto, Kai Matsunaga, Tsunefumi Mizuno, Koji Mori, Hiroshi Murakami, Hiroshi Nakajima, Toshiki Sato, Makoto Sawada, Haruto Sonoda, Shunsuke Suzuki, Dai Tateishi, Yukikatsu Terada, Hiroyuki Uchida
    Publications of the Astronomical Society of Japan 77(Supplement_1) S154-S170 2025年6月6日  
    Abstract Young supernova remnants (SNRs) provide crucial insights into explosive nucleosynthesis products and their velocity distribution soon after the explosion. However, these velocities are influenced by the dynamics of the circumstellar medium (CSM), which in young core-collapse SNRs originates from the progenitor’s late-phase mass loss. Cassiopeia A (Cas A), the youngest known Galactic core-collapse SNR, was studied to analyze the spatial distribution of silicon and sulfur radial velocities using two high-spectral-resolution observations from the XRISM/Resolve imaging spectrometer. Resolve’s capabilities enabled the detailed characterization of Si xiii, Si xiv, S xv, and S xvi lines, whose line shapes can be resolved and modeled using Gaussian radial velocity components. The radial velocities measured generally align with previous CCD-based results, confirming that they were not artifacts caused by blended lines or ionization variations. Modeling line profiles with two-component Gaussians improved fits in some regions, revealing distinct redshifted (back side) and blueshifted (front side) components only in a few specific areas. In most regions, however, both components were either both redshifted (north-west) or both blueshifted (south-east), consistent with the patchy ejecta shell morphology seen in optically emitting fast-moving knots. The individual line components revealed line broadening ranging from $\sigma _v \approx 200$ to $\sigma _v \approx 2000$ ${\rm km\, s^{-1 } }$. Components with $1000 \lesssim \sigma _v \lesssim 2000$ ${\rm km\, s^{-1 } }$ are consistent with previously determined reverse-shock velocities, suggesting non-equilibrated or partially equilibrated ion temperatures. Narrow components with small radial velocities found near Cas A’s projected center likely originate from shocked CSM plasma. But the low radial velocity and small $\sigma _v$ poses a challenge to identify these components with either the front side or back side of the SNR, or a blend of both sides.
  • Aya Bamba, Manan Agarwal, Jacco Vink, Paul Plucinsky, Yukikatsu Terada, Ehud Behar, Satoru Katsuda, Koji Mori, Makoto Sawada, Hironori Matsumoto, Lia Corrales, Adam Foster, Shin-ichiro Fujimoto, Liyi Gu, Kazuhiro Ichikawa, Kai Matsunaga, Tsunefumi Mizuno, Hiroshi Murakami, Hiroshi Nakajima, Toshiki Sato, Haruto Sonoda, Shunsuke Suzuki, Dai Tateishi, Hiroyuki Uchida, Masahiro Ichihashi, Kumiko Nobukawa, Salvatore Orlando
    Publications of the Astronomical Society of Japan 77(Supplement_1) S144-S153 2025年5月28日  
    Abstract The expansion structure of supernova remnants is important for understanding not only how heavy elements are distributed into space, but also how supernovae explode. The ejecta expansion structure of the young core-collapse supernova remnant Cas A is investigated, with Doppler parameter mapping of the Fe–K complex by the Resolve microcalorimeter onboard the X-ray Imaging and Spectroscopy Mission (XRISM). It is found that the Fe ejecta are blueshifted in the south-east and redshifted in the north-west, indicating an incomplete shell structure, similar to intermediate-mass elements (IMEs) such as Si and S. The Fe has a velocity shift of $\sim$1400 and $\sim$2160 km s$^{-1}$ in the north-west and south-east regions, respectively, with the error range of a few hundred km s$^{-1}$. These values are consistent with those for the IMEs in the north-west region, but larger than those for the IMEs in the south-east region, although the large error region prevented us from concluding which component has significantly higher velocity. The line broadening is larger in the center with values of $\sim$2000–3000 km s$^{-1}$, and smaller near the edges of the remnant. The radial profiles of the Doppler shift and broadening of the IMEs and Fe indicate that the Fe ejecta may expand asymmetrically as IME ejecta, although the large error regions do not allow us to confirm this. Moreover, we see little bulk Doppler broadening of the Fe lines in the north-eastern jet region whereas the IME lines exhibit significant broadening. No such narrow lines are detected in the north-west region. These findings suggest an asymmetric expansion of the ejecta potentially driven by large-scale asymmetries originating from the supernova explosion. This interpretation aligns with the large-scale asymmetries predicted by models of neutrino-driven supernova explosions.

MISC

 284
  • 鈴木寛大, 米山友景, 森浩二, 中嶋大, 冨田洋, OKAJIMA Takashi, 野田博文, 小林翔悟, 内田裕之, 萩野浩一, 信川久実子, 田中孝明, 村上弘志, 信川正順, 内山秀樹, 松本浩典, 小高裕和, 鶴剛, 山内誠, 廿日出勇, 幸村孝由, 山岡和貴, 石田学, 前田良知, 林多佳由, 田村啓輔, BOISSAY-MALAQUIN R., 佐藤寿紀, 吉田鉄生, 金丸善朗, 伊師大貴, 水野恒史, 堂谷忠靖, 尾崎正伸, 常深博, 東竜一, 朝比奈遥, 中村彰太郎, 亀井貴光, 福田将大, 善本真梨那, 袴田知宏, 青柳美緒, 島耕平, 井上峻, 青木悠馬, 伊藤耶馬斗, 青木大輝, 二之湯開登, 清水康行, 樋口茉由, 市川雄大, 中野瑛子, 岳本廉央, 松島司, 浦瀬怜香, 倉嶋順, 淵琴美, 林田清
    日本物理学会講演概要集(CD-ROM) 80(1) 2025年  
  • 中武隼汰, 樋口茉由, 伊藤世織, 青木大輝, 二之湯開登, 幸村孝由, 内田悠介, 米山友景, 萩野浩一, 鶴剛, 内田裕之, 井上峻, 岳本廉央, 中野瑛子, 森浩二, 鈴木寛大, 中嶋大, 信川正順, 長尾梓生, 島耕平, 松本浩典, 青木悠馬, 信川久実子, 内山秀樹, 村上弘志, 田中孝明, 冨田洋, 冨田洋, 林多佳由, 岡島崇
    日本天文学会年会講演予稿集 2025 2025年  
  • 樋口茉由, 中武隼汰, 伊藤世織, 二之湯開登, 青木大輝, 幸村孝由, 内田悠介, 米山友景, 萩野浩一, 鶴剛, 内田裕之, 井上峻, 岳本廉央, 中野瑛子, 森浩二, 鈴木寛大, 中嶋大, 信川正順, 長尾梓生, 島耕平, 松本浩典, 青木悠馬, 信川久実子, 内山秀樹, 村上弘志, 田中孝明, 冨田洋
    日本天文学会年会講演予稿集 2025 2025年  
  • 岳本廉央, 中野瑛子, 市川雄大, 倉嶋順, 松島司, 鈴木寛大, 森浩二, 青木悠馬, 伊藤耶馬斗, 信川久実子, 信川正順, 袴田知宏, 青柳美緒, 島耕平, 小高裕和, 松本浩典, 善本真梨那, 中嶋大, 村上弘志, 内田裕之, 鶴剛, 田中孝明, 米山友景, 冨田洋, 金丸善朗, 伊師大貴, 水野恒史, 萩野浩一, 野田博文, 内山秀樹, 山内誠, 廿日出勇, 樋口茉由, 幸村孝由, 小林翔悟, 山岡和貴, 堂谷忠靖, 尾崎正伸, 常深博
    日本天文学会年会講演予稿集 2025 2025年  
  • 金丸善朗, 勝田哲, 秋田桜佑, 森浩二, 岳本廉央, 大城勇憲, LEUNG Shing-Chi, 佐藤寿紀, 馬場彩, 市堰いろは, GU Liyi, 山田真也, 小湊菜央, 内田裕之, 穴澤萌衣, VINK Jacco, 鈴木寛大, 田中孝明, 田村啓輔, 常深博, 寺田幸功, 廿日出勇, PORTER F. Scott, PLUCINSKY Paul P., 山内茂雄, WILLIAMS Brian
    日本天文学会年会講演予稿集 2025 2025年  

担当経験のある科目(授業)

 5

共同研究・競争的資金等の研究課題

 8

社会貢献活動

 3

メディア報道

 1

その他

 1