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Ayumu Kuwahara
Ayumu Kuwahara
Other names桑原歩
GLOBE Institute, University of Copenhagen
Verified email at sund.ku.dk - Homepage
Title
Cited by
Cited by
Year
Gas flow around a planet embedded in a protoplanetary disc-dependence on planetary mass
A Kuwahara, H Kurokawa, S Ida
Astronomy & Astrophysics 623, A179, 2019
362019
Influences of protoplanet-induced three-dimensional gas flow on pebble accretion-I. Shear regime
A Kuwahara, H Kurokawa
Astronomy & Astrophysics 633, A81, 2020
212020
Influences of protoplanet-induced three-dimensional gas flow on pebble accretion-II. Headwind regime
A Kuwahara, H Kurokawa
Astronomy & Astrophysics 643, A21, 2020
132020
Dust ring and gap formation by gas flow induced by low-mass planets embedded in protoplanetary disks-I. Steady-state model
A Kuwahara, H Kurokawa, T Tanigawa, S Ida
Astronomy & Astrophysics 665, A122, 2022
52022
Spin of protoplanets generated by pebble accretion: Influences of protoplanet-induced gas flow
K Takaoka, A Kuwahara, S Ida, H Kurokawa
Astronomy & Astrophysics 674, A193, 2023
32023
Analytic description of the gas flow around planets embedded in protoplanetary disks
A Kuwahara, H Kurokawa
Astronomy & Astrophysics 682, A14, 2024
22024
「2022 年度最優秀発表賞受賞論文」 小質量惑星が駆動するガス流れ場: 円盤ダスト面密度と惑星形成への影響
桑原歩, 黒川宏之, 谷川享行, 井田茂
日本惑星科学会誌遊星人 32 (3), 176-185, 2023
2023
原始惑星が駆動するガス流: ペブル集積への影響
桑原歩
日本惑星科学会誌遊星人 31 (3), 203-219, 2022
2022
原始惑星が駆動するガス流: その 3 次元形態と性質について
桑原歩
日本惑星科学会誌遊星人 31 (3), 188-202, 2022
2022
Influences of protoplanet-induced three-dimensional gas flow on pebble accretion . Headwind regime
A Kuwahara, H Kurokawa
arXiv preprint arXiv:2009.07636, 2020
2020
日本天文学会早川幸男基金による渡航報告書: 50th Annual Meeting of the AAS Division For Planetary Sciences 2018
桑原歩
天文月報= The astronomical herald 113 (10), 657-659, 2020
2020
Proto-atmosphere Accretion on Eccentric Planets and its Impact on Planet Formation
C Mai, S Desch, R Kuiper, H Kurokawa, A Kuwahara, G Marleau
American Astronomical Society Meeting Abstracts# 235 235, 224.05, 2020
2020
Influences of three-dimensional gas flow induced by protoplanets on pebble accretion --. shear regime
A Kuwahara, H Kurokawa
arXiv preprint arXiv:1911.12999, 2019
2019
Hydrodynamic effects on the accretion of gas and dust onto protoplanetary cores
H Kurokawa, A Kuwahara, S Okuzumi
EPSC-DPS Joint Meeting 2019 2019, EPSC-DPS2019-181, 2019
2019
Suppression of pebble accretion by planet-induced gas flow: The implication for the origin of super-Earths
A Kuwahara
A&A 623, A179, 2019
2019
Suppression of pebble accretion by planet-induced gas flow: The implication for the formation of super-Earths
A Kuwahara, H Kurokawa
AAS/Division for Extreme Solar Systems Abstracts 51, 317.02, 2019
2019
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