Theses supervised by Kurokawa. 過去に黒川が指導した学生の学位論文
Haruka Sakuraba (2023), The origin of volatile composition of terrestrial planets: Interaction between delivery, partitioning, and atmospheric loss.
Ayumu Kuwahara (2023), Gas flow, dust dynamics, and protoplanetary-disk substructures induced by embedded planets.
Jared Landry (2024), Impacts of atmospheric carbon species on climates of terrestrial planets. (優秀学生賞*; 東工大)
Kaustav Sen (2024), Volatile budget of young exoplanets in the habitable zone of M-Stars.
Issei Kobayashi (2024), Evolution of rocky exoplanets with hydrogen, helium, and water vapor atmospheres: effects of atmospheric escape and degassing.
Kosuke Aoki (2022), CO-rich atmospheres of terrestrial planets: The deep carbon cycle combined with climate and photochemistry.
Ayumu Kuwahara (2020), Pebble accretion in gas flow induced by protoplanets(優秀学生賞*; 東工大)
Haruka Sakuraba (2019), The origin of Earth’s volatile composition: Effects of impact-induced atmospheric erosion and element partitioning during the accretion.
齋藤 潤太 (2025), The origin of the exoplanet radius valley: the effects of photoevaporation and degassing and implications for atmospheric composition.
吉田 海渡 (2025), 地球表層の硫黄循環の数理モデル.
小林 一生 (2022), 太陽系外サブネプチューンの進化: 惑星内部への水素溶解と大気散逸の影響.
青木 紘介 (2020), マントルと大気の酸化還元度を考慮した地球型惑星の炭素循環と表層環境進化.
桑原 歩 (2018), 原始惑星系円盤内における小質量惑星周りのガスダイナミクス(優秀学生賞*; 東工大)
櫻庭 遥 (2017), 隕石重爆撃期の地球型惑星大気の進化.
篠山大輝 (2016), 原始惑星系円盤中における惑星大気構造と円盤ガスの流入及び惑星大気の流出.
*学科で1名選出.いわゆる総代.