Profile Information
- Affiliation
- Associate Professor, Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
- Degree
- Ph(Mar, 2013, The University of Tokyo)
- Researcher number
- 70720697
- ORCID ID
https://orcid.org/0000-0002-6265-1672
- J-GLOBAL ID
- 202001010789612597
- researchmap Member ID
- R000013995
Research Interests
6Research Areas
1Research History
7-
Sep, 2016 - Oct, 2017
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Apr, 2013 - Jul, 2013
Education
4-
Apr, 2000 - Mar, 2003
Committee Memberships
3-
Apr, 2023 - Present
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Apr, 2022 - Mar, 2024
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Apr, 2019 - Mar, 2020
Awards
15-
May, 2024
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Apr, 2021
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Dec, 2020
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Sep, 2020
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Dec, 2018
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Mar, 2013
Papers
72-
Journal of Applied Physics, 135(24), Jun 27, 2024 Peer-reviewedIonic liquid electrospray thrusters represent an alternative propulsion method for spacecraft to conventional plasma propulsion because they do not require plasma generation, which significantly increases the thrust efficiency. The porous emitter thruster has the advantages of simple propellant feeding and multi-site emissions, which miniaturize the thruster size and increase thrust. However, the multi-scale nature, that is, nano- to micrometer-sized menisci on the millimeter-size porous needle tip, makes modeling multi-site emissions difficult, and direct observation is also challenging. This paper proposes a simple model for multi-site emissions, which assumes that the ionic conductivity or ion transport in the porous media determines the ion-emission current. The conductivity was evaluated by comparing the experimental and numerical data based on the model. The results suggest that the ionic conductivity of the porous emitter is suppressed by the ion–pore wall friction stress. Additionally, the model indicates that the emission area expansion on the porous emitter creates the unique curve shape of the current vs voltage characteristics for multi-site emissions.
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AIP Advances, 14(6), Jun 1, 2024 Peer-reviewedAn understanding of the degradation mechanism of a microwave discharge cathode is the key to extending the lifetime of microwave ion thruster systems. This study investigates the effect of nozzle contamination by sputtered Ag-polytetrafluoroethylene (PTFE) on microwave discharge cathode performance. The current–voltage characteristics were measured for nominal and contaminated (by PTFE spray with 0.2 µm thick or tape with 0.15 mm thick) cathodes. The contamination thickness and area on the nozzle were varied to investigate the characteristic differences. It was confirmed that the anode voltage increased by 20 V or more in the case of the contaminated cathode. The anode voltage was measured for the sputter-contaminated cathode to evaluate the effect of contamination under more realistic conditions. After 630 h of sputter-contamination operation, it is estimated that sputtered particles were deposited to a thickness of 77 µm at most, and the anode voltage increased by 8 V. The results show that the downstream surface of the nozzle is critical for maintaining cathode performance. The insulating coating formed by the sputtered PTFE may interfere with ion absorption and degrade electron emission capability. A theoretical model based on the extended Brophy model supports these results. This study provides important information for the use of PTFE-based materials around ion thrusters.
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Acta Astronautica, May, 2024 Peer-reviewed
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Vacuum, 220 112760-112760, Feb, 2024 Peer-reviewed
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Acta Astronautica, 212 130-138, Nov, 2023 Peer-reviewed
Misc.
110-
宇宙科学技術連合講演会講演集(CD-ROM), 67th, 2023
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令和4年度宇宙輸送シンポジウム: 講演集録 = Proceedings of Space Transportation Symposium FY2022, Jan, 2023令和4年度宇宙輸送シンポジウム(2023年1月12日-13日. 宇宙航空研究開発機構宇宙科学研究所(JAXA)(ISAS)) , 相模原市, 神奈川県 Space Transportation Symposium FY2022 (January 12-13, 2023. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency (JAXA)(ISAS)), Sagamihara, Kanagawa Japan In the 3D-printed resistojet that the authors are working on, it is necessary to provide an electrical contact point at a high temperature part considering the limitations in 3D printing. So far, we have made some prototypes of flat contact type, tapered contact type, and screw type. In addition, as a new attempt, we also describe design guidelines for banana plug type that contact with radial surface pressure. 資料番号: SA6000184068 STEP-2022-016
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日本航空宇宙学会誌 = Aeronautical and space sciences Japan, 70(10) 214-217, Oct, 2022
Books and Other Publications
3-
Elsevier, 2022 (ISBN: 9780323997317)
Teaching Experience
4-
Dec, 2022 - Jan, 2023Advanced Energy Conversion (Graduate School of Frontier Sciences, The University of Tokyo)
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Sep, 2021 - Feb, 2022Propulsion and Energy Systems (Graduate School of Frontier Sciences The University of Tokyo)
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Sep, 2021 - Nov, 2021Propulsion and Energy Systems (The University of Tokyo)
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Sep, 2013 - Mar, 2016Earth and Astronomical Science (Komazawa Women's University)
Professional Memberships
3-
Jul, 2011 - Present
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Sep, 2009 - Present
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Apr, 2008 - Present
Research Projects
7-
科学研究費助成事業, 日本学術振興会, Apr, 2023 - Mar, 2027
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2023 - Mar, 2027
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Grants-in-Aid for Scientific Research Grant-in-Aid for Young Scientists (A), Japan Society for the Promotion of Science, Apr, 2017 - Mar, 2021
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Grants-in-Aid for Scientific Research Grant-in-Aid for Young Scientists (B), Japan Society for the Promotion of Science, Apr, 2014 - Mar, 2017
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Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (A), Japan Society for the Promotion of Science, Apr, 2010 - Mar, 2015
Industrial Property Rights
2Academic Activities
1Media Coverage
1-
J-WAVE, JK Radio Tokyo United, https://www.j-wave.co.jp/original/tokyounited/archives/the-hidden-story/2021/02/19-111253.html, Feb, 2021 TV or radio program