研究者業績

大島 誠人

オオシマ トモヒト  (Tomohito Ohshima)

基本情報

所属
兵庫県立大学西はりま天文台 研究員

連絡先
ohshimanhao.jp
J-GLOBAL ID
202001008471096501
researchmap会員ID
R000010700

研究キーワード

 1

学歴

 2

委員歴

 1

主要な論文

 32
  • 大島誠人, 穂積正人
    Stars and Galaxies 2(1) 2019年12月  査読有り筆頭著者
  • OHSHIMA Tomohito, KATO Taichi, PAVLENKO Elena
    Publications of the Astronomical Society of Japan 66(4) 67-1-22 2014年2月24日  査読有り筆頭著者
  • Tomohito Ohshima, Taichi Kato, Elena P. Pavlenko, Hiroshi Itoh, Enrique de Miguel, Thomas Krajci, Hidehiko Akazawa, Kazuhiko Shiokawa, William Stein, Alex Baklanov, Denis Samsonov, Oksana Antonyuk, Maksim V. Andreev, Kazuyoshi Imamura, Franz-Josef Hambsch, Hiroyuki Maehara, Javier Ruiz, Shin'ichi Nakagawa, Kiyoshi Kasai, Boyd Boitnott, Jani Virtanen, Ian Miller
    2012年7月11日  査読有り筆頭著者
    We report on a discovery of "negative" superhumps during the 2011 January superoutburst of ER UMa. During the superoutburst which started on 2011 January 16, we detected negative superhumps having a period of 0.062242(9) d, shorter than the orbital period by 2.2%. No evidence of positive superhumps was detected during this observation. This finding indicates that the disk exhibited retrograde precession during this superoutburst, contrary to all other known cases of superoutbursts. The duration of this superoutburst was shorter than those of ordinary superoutbursts and the intervals of normal outbursts were longer than ordinary ones. We suggest a possibility that such unusual outburst properties are likely a result of the disk tilt, which is supposed to be a cause of negative superhumps: the tilted disk could prevent the disk from being filled with materials in the outmost region which is supposed to be responsible for long-duration superoutbursts in ER UMa-type dwarf novae. The discovery signifies the importance of the classical prograde precession in sustaining long-duration superoutbursts. Furthermore, the presence of pronounced negative superhumps in this system with a high mass-transfer rate favors the hypothesis that hydrodynamical lift is the cause of the disk tilt.

MISC

 27

書籍等出版物

 2

担当経験のある科目(授業)

 1
  • 2014年4月 - 2024年3月
    基礎天文学  (大阪電気通信大学 総合情報学部 デジタルゲーム学科)

所属学協会

 2

共同研究・競争的資金等の研究課題

 1