Opto-Electronic Engineering, Volume. 50, Issue 11, 230310-1(2023)

Special issue on satellite telescope for space gravitational wave detection

Naiting Gu1,2,3、*, Xiaoyong Wang4, Desheng Wen1,5, Changhui Rao1,2,3, Zebing Zhou6, and Xianji Ye7
Author Affiliations
  • 1University of Chinese Academy of Sciences, Beijing 100049, China
  • 2Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu, Sichuan 610209, China
  • 3Key Laboratory of Adaptive Optics, Chinese Academy of Sciences, Chengdu, Sichuan 610209, China
  • 4Beijing Institute of Space Mechanical and Electrical Engineering, Beijing 100094, China
  • 5Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi' an, Shaanxi 710019, China
  • 6School of Physics, Huazhong University of Science and Technology, Wuhan, Hubei 430074, China
  • 7MOE Key Laboratory of TianQin Mission, TianQin Research Center for Gravitational Physics & School of Physics and Astronomy, Frontiers Science Center for TianQin, Gravitational Wave Research Center of CNSA, Sun Yat-sen University (Zhuhai Campus), Zhuhai, Guangdong 519082, China
  • show less
    References(13)

    [1] Abbott B P, Abbott R, Abbott T D et al. Observation of gravitational waves from a binary black hole merger[J]. Phys Rev Lett, 116, 061102(2016).

    [3] Danzmann K. The LISA mission: a laser-interferometric gravitational wave detector in space[C], 247-252(1997).

    [4] Luo J, Ai L H, Ai Y L et al. A brief introduction to the TianQin project[J]. Acta Scientiarum Nat Univ Sunyatseni, 60, 1-19(2021).

    [5] Luo Z R, Zhang M, Jin G et al. Introduction of Chinese space-borne gravitational wave detection program “Taiji” and “Taiji-1” satellite mission[J]. J Deep Space Explor, 7, 3-10(2020).

    [6] Wang X Y, Bai S J, Zhang Q et al. Research progress of telescopes for space-based gravitational wave missions[J]. Opto-Electron Eng, 50, 230219(2023).

    [7] Li B H, Luo J, Qiu M Y et al. Design technology of the truss support structure of the ultra-low thermal deformation gravitational wave detection telescope[J]. Opto-Electron Eng, 50, 230155(2023).

    [8] Zhao K, Fan W T, Hai H W et al. Design of optical path stability measurement scheme and theoretical analysis of noise in telescope[J]. Opto-Electron Eng, 50, 230158(2023).

    [9] Liu Y, Hua Z Y, Peng S J et al. Research on optical field calculation methods in the space gravitational wave telescope[J]. Opto-Electron Eng, 50, 230186(2023).

    [10] Fan Z C, Tan H, Mo Y et al. Design theory and method of off-axis four-mirror telescope for space-based gravitational-wave mission[J]. Opto-Electron Eng, 50, 230194(2023).

    [11] Wei X Y, Song Q L, Yang J S et al. Research on wavefront measurement technology of space-based telescope using Shack- Hartmann wavefront sensor[J]. Opto-Electron Eng, 50, 230215(2023).

    [12] Zhang Y H, Zhong Z Q, Zhang B. Analysis of surface scattering characteristics of ultra-smooth optical components in gravitational wave detection system[J]. Opto-Electron Eng, 50, 230222(2023).

    [13] Yan Z H, Zhou Z Y, Li Y et al. Study on the charge driven displacement behavior of the actuator of the Point Ahead Angle Mechanism of a space gravitational wave telescope[J]. Opto-Electron Eng, 50, 230223(2023).

    Tools

    Get Citation

    Copy Citation Text

    Naiting Gu, Xiaoyong Wang, Desheng Wen, Changhui Rao, Zebing Zhou, Xianji Ye. Special issue on satellite telescope for space gravitational wave detection[J]. Opto-Electronic Engineering, 2023, 50(11): 230310-1

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Article

    Received: --

    Accepted: Dec. 21, 2023

    Published Online: Mar. 26, 2024

    The Author Email:

    DOI:10.12086/oee.2023.230310

    Topics