Differences between revisions 165 and 168 (spanning 3 versions)
Revision 165 as of 2022-04-06 22:15:41
Size: 45418
Comment:
Revision 168 as of 2022-04-07 16:07:33
Size: 50755
Editor: YousukeIto
Comment:
Deletions are marked like this. Additions are marked like this.
Line 398: Line 398:

 * Folded Pendulum加速度計を用いた大型低温重力波望遠鏡KAGRAのための能動防振システムの研究, Studies of Active Vibration Isolation System for KAGRA, Large-scale Cryogenic Gravitational wave Telescope, using Folded Pendulum Accelerometer
  * 杉山 拓夢, University of Tokyo (2022, FY2021)

Line 416: Line 421:
 * 機械学習を用いた重力波観測信号モニターの開発
  * 大橋 朋弥, 大阪市立大学, (2022, FY2021)

 * ARMA モデルを利用した重力波検出器のノイズ除去
  * 藤本 悠也, 大阪市立大学, (2022, FY2021)
 
 * 透過位相誤差分布を使用したサファイア鏡の複屈折推定の検証
  * 阿部誉, Tokyo Institute of Technology (2022, FY2021)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/syuron_tachihara.pdf|深層学習を用いた鏡の姿勢制御について]]
  * 立原浩輝, Tokyo Institute of Technology (2022, FY2021)
Line 458: Line 475:

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/syuron_otabe.pdf|高硬度光ばねを用いた重力波信号増幅システムの開発]]
  * 小田部荘達, Tokyo Institute of Technology (2020, FY2019)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/syuron_sasaki.pdf|KAGRA の懸架系における非平衡熱雑音の検証]]
  * 佐々木開, Tokyo Institute of Technology (2020, FY2019)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/syuron_liu.pdf|Detection and Localization of Gravitational Waves Using Convolutional Neural Networks]]
  * Liu Yuting, Tokyo Institute of Technology (2020, FY2019)

 * [[https://gwdoc.icrr.u-tokyo.ac.jp/cgi-bin/private/DocDB/ShowDocument?docid=9630|低温光変位センサーの開発と KAGRA 低温懸架装置の ダンピング制御への応用に関する研究 Development and application of cryogenic displacement sensors towards the damping control of KAGRA cryogenic payloads]]
  * 福永 真士, University of Tokyo (2019, FY2018)
Line 467: Line 497:
 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/syuron_kusayanagi.pdf|次世代重力波検出器のための非線形光学効果を用いた信号増幅]]
  * 草柳浩平, Tokyo Institute of Technology (2019, FY2018)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/syuron_hisatomi.pdf|ニューラルネットワークを用いたリングダウン重力波のデータ解析]]
  * 久富正博, Tokyo Institute of Technology (2019, FY2018)
Line 497: Line 533:
 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/kasuya_M_thesis0208.pdf|重力波検出器KAGRAの出力モードクリーナの開発]]
  * 粕谷順子, Tokyo Institute of Technology (2018, FY2017)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/master_yaginuma.pdf|非線形光学結晶設置型重力波検出器の原理と光学損失の振る舞い]]
  * 柳沼拓哉, Tokyo Institute of Technology (2018, FY2017)
Line 570: Line 612:
  * Kazuma Matsunaga, Toyama University (2021)   * Kazuma Matsunaga, Toyama University (2022, FY2021)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_sasaoka.pdf|ニューラルネットワークを用いた重力波の到来方向推定]]
  * 笹岡聖也, Tokyo Institute of Technology (2022, FY2021)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_ksuzuki.pdf|信号リサイクル干渉計の安定化に向けたデジタル制御システムの構築]]
  * 鈴木海堂, Tokyo Institute of Technology (2021, FY2020)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_tsuzuki.pdf|重力波望遠鏡KAGRA における地下水の重力勾配雑音のシミュレーションによる研究]]
  * 鈴木孝典, Tokyo Institute of Technology (2021, FY2020)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_kuribayashi.pdf|温度勾配のある電気回路の熱雑音の測定]]
  * 栗林誠, Tokyo Institute of Technology (2020, FY2019)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_tachihara.pdf|シグナルリサイクル干渉計の安定化に向けた制御技術の開発]]
  * 立原浩輝, Tokyo Institute of Technology (2020, FY2019)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_inoue.pdf|重力波望遠鏡における地下水の重力勾配雑音の研究]]
  * 井上崇, Tokyo Institute of Technology (2019, FY2018)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_otabe.pdf|偏光解析法を用いたリング共振器の制御]]
  * 小田部荘達, Tokyo Institute of Technology (2018, FY2017)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_nakashima.pdf|IIRフィルタを用いた光干渉計の制御]]
  * 中島良介, Tokyo Institute of Technology (2018, FY2017)
Line 575: Line 642:
  * Nariyasu Sugawara, Niigata University (2017)   * Nariyasu Sugawara, Niigata University (2017, FY2016)
Line 578: Line 645:
  * Nozomi Kagawa, Niigata University (2017)   * Nozomi Kagawa, Niigata University (2017, FY2016)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_shimoi.pdf|マイケルソン干渉計の制御とデジタルシステムの導入]]
  * 下井建生, Tokyo Institute of Technology (2017, FY2016)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/sotsuron_hisatomi.pdf|光ばね実験における懸架系の開発及びその性能評価」]]
  * 久富正博, Tokyo Institute of Technology (2017, FY2016)
Line 581: Line 654:
  * Junko Kasuya, Tokyo Institute of Technology (2016)   * Junko Kasuya, Tokyo Institute of Technology (2016, FY2015)
Line 584: Line 657:
  * Takuya Yaginuma, Tokyo Institute of Technology (2016)   * Takuya Yaginuma, Tokyo Institute of Technology (2016, FY2015)
Line 587: Line 660:
  * Sho Atsuta, Tokyo Institute of Technology (2015)   * Sho Atsuta, Tokyo Institute of Technology (2015, FY2014)
Line 590: Line 663:
  * Yuu Kataoka, Tokyo Institute of Technology (2015)   * Yuu Kataoka, Tokyo Institute of Technology (2015, FY2014)

 * [[https://www.gravity.phys.titech.ac.jp/doc/thesis/Sakihama_Thesis.pdf連星系およびブラックホールの準固有振動からの重力波の研究]]
  * 崎浜幸秀, Tokyo Institute of Technology (2015, FY2014)
Line 593: Line 669:
  * Kazushiro Yano, Tokyo Institute of Technology (2014)   * Kazushiro Yano, Tokyo Institute of Technology (2014, FY2013)

KAGRA Publications

List of Journal papers, PhD theses, Master theses, and Graduation theses related to KAGRA research.

in preparation

For accessing overleaf, please contact to paper-writing team (PWT) leaders. If you plan to begin a new project with overleaf (online LaTeX sharing editor), contact to kagra-overleaf_at_icrr.u-tokyo.ac.jp

  • Overview of KAGRA : (4) Data transfer and management
  • Overview of KAGRA : (5) Data analysis methods
  • IOO paper in preparation

Submitted Papers

  • Overview of KAGRA : (2) Noise Budget
  • The current status and future prospects of KAGRA, the large-scale cryogenic gravitational wave telescope built in the Kamioka underground

Accepted Papers

Journal Papers

PhD Thesis

Master Thesis

Graduation Thesis

KAGRA/Publications (last edited 2024-03-01 11:51:13 by KentaroSomiya)