Curriculum Vitaes
Profile Information
- Affiliation
- JSPS Research Fellowship for Young Scientists (PD), Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
- Degree
- Ph.D (Sciense)(Mar, 2022, Kwansei Gakuin University)Master (Science)(Mar, 2019, Kwansei Gakuin University)
- Contact information
- takimoto.kohji
jaxa.jp - Researcher number
- 40967569
- ORCID ID
https://orcid.org/0000-0002-8405-9549- J-GLOBAL ID
- 202201014396272085
- researchmap Member ID
- R000036452
Research Interests
7Research History
3Education
3-
Apr, 2013 - Mar, 2017
Papers
19-
The Astrophysical Journal, Nov 20, 2025We present new anisotropy measurements in the near-infrared (NIR) for angular multipoles $300<\ell<10^5$ using imaging data at 1.1 $\mu$m and 1.8 $\mu$m from the fourth flight of the Cosmic Infrared Background ExpeRiment (CIBER). Using improved analysis methods and higher quality fourth flight data, we detect surface brightness fluctuations on scales $\ell<2000$ with CIBER auto-power spectra at $\sim14\sigma$ and 18$\sigma$ for 1.1 and 1.8 $\mu$m, respectively, and at $\sim10\sigma$ in cross-power spectra. The CIBER measurements pass internal consistency tests and represent a $5-10\times$ improvement in power spectrum sensitivity on several-arcminute scales relative to that of existing studies. Through cross-correlations with tracers of diffuse galactic light (DGL), we determine that scattered DGL contributes $<10\%$ to the observed fluctuation power at high confidence. On scales $\theta > 5'$, the CIBER auto- and cross-power spectra exceed predictions for integrated galactic light (IGL) and integrated stellar light (ISL) by over an order of magnitude, and are inconsistent with our baseline IGL+ISL+DGL model at high significance. We cross-correlate two of the CIBER fields with 3.6 $\mu$m and 4.5 $\mu$m mosaics from the Spitzer Deep Wide-Field Survey and find similar evidence for departures from Poisson noise in Spitzer-internal power spectra and CIBER $\times$ Spitzer cross-power spectra. A multi-wavelength analysis indicates that the auto-power of the fluctuations at low-$\ell$ is bluer than the Poisson noise from IGL and ISL; however, for $1' <\theta < 10'$, the cross-correlation coefficient $r_{\ell}$ of nearly all band combinations decreases with increasing $\theta$, disfavoring astrophysical explanations that invoke a single correlated sky component.
-
ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 280(2), Oct 1, 2025
-
The Astrophysical Journal, Sep 20, 2025Precise, unbiased measurements of extragalactic background anisotropies require careful treatment of systematic effects in fluctuation-based, broad-band intensity mapping measurements. In this paper we detail improvements in methodology for the Cosmic Infrared Background ExpeRiment (CIBER), concentrating on flat field errors and source masking errors. In order to bypass the use of field differences, which mitigate flat field errors but reduce sensitivity, we characterize and correct for the flat field on pseudo-power spectra, which includes both additive and multiplicative biases. To more effectively mask point sources at 1.1 $\mu$m and 1.8 $\mu$m, we develop a technique for predicting masking catalogs that utilizes optical and NIR photometry through random forest regression. This allows us to mask over two Vega magnitudes deeper than the completeness limits of 2MASS alone, with errors in the shot noise power remaining below $<10\%$ at all masking depths considered. Through detailed simulations of CIBER observations, we validate our formalism and demonstrate unbiased recovery of the sky fluctuations on realistic mocks. We demonstrate that residual flat field errors comprise $<20\%$ of the final CIBER power spectrum uncertainty with this methodology.
-
The Astrophysical Journal, Jul 20, 2025
-
Space Telescopes and Instrumentation 2024: Optical, Infrared, and Millimeter Wave, 13092 117-117, Aug 23, 2024
Misc.
63Presentations
7-
2024年度光赤天連シンポジウム「光赤天連の長期的ロードマップおよび若手育成支援」, Sep 19, 2024, 石垣美歩、栗田光樹夫、児玉忠恭、高田昌広、長尾透、橋本拓也、 本田充彦、本原顕太郎、吉田二美2024年度のシンポジウムでは「光赤天連の長期的ロードマップおよび若手育成支援」と題して、日本における光赤外天文学の将来設計のための議論を行う。 日本において光赤外天文学を推進する研究機関として中核を担うのは国立天文台と宇宙科学研究所であろう。 両機関が考える地上およびスペースから行う光赤外天文学の展望を両機関のトップをお招きし、2020年代、2030年代に実現すべきと考えている課題についてじっくり話を伺う。 現行プロジェクトの報告を聞き、海外の動向を共有し、光赤天連将来計画検討専門委員会の委員での検討状況の報告を聞く。 ロードマップに提案された個々の計画についての説明を聞く機会も設ける。 さらに、最近活発になってきた産業界の宇宙進出についてのセッションを設け、光赤天のコミュニティとどのように協力関係を構築できるか考える機会を設ける。 また、長期計画実現において若い戦力は欠かせないため、若手研究者が研究発表するセッションも設ける。 博士号を取ったばかりの研究者や今年度博士号を取る予定の学生が自身の研究を発表する場としていただく。 本シンポジウムは、今後の天文学の展望を共有し、光赤外天文学における日本のロードマップ策定について議論する場とする。
Teaching Experience
3-
Apr, 2021 - Mar, 2022Introduction to Science and Technology (Kwansei Gakuin Senior High School)
-
Apr, 2020 - Mar, 2021Fundamental Physics Experiment I, Fundamental Physics Experiment II (Kwansei Gakuin University)
-
Apr, 2017 - Mar, 2019Physics Experiment I, Physics Experiment II (Kwansei Gakuin University)
Professional Memberships
2-
- Present
-
- Present
Research Projects
4-
科学研究費助成事業, 日本学術振興会, Apr, 2024 - Mar, 2027
-
科学研究費助成事業, 日本学術振興会, Sep, 2024 - Mar, 2027
-
Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2024 - Mar, 2027
-
Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2023 - Mar, 2026
Media Coverage
3-
宇宙科学研究所 研究情報ポータル あいさすGATE, Feb 14, 2023 Internet