Infrared and Laser Engineering, Volume. 49, Issue 7, 20190469(2020)
Structural design optimization of space gravitational wave telescope primary mirror system
[1] Shappee B J, Simon J D, Drout M R. Early spectra of the gravitational wave source GW170817: Evolution of a neutron star merger[J]. Science, 358, eaaq0186(2017).
[6] [6] Yoder P, Vukobratovich D. Optomechanical systems design, Two Volume [M]. 4th ed. Dekker, 2015.
[7] [7] Kihm H, Yang H S, Rhee H G, et al. Development of 1m primary mirr f a spacebne camera[C] Optomechanical Engineering 2015. International Society f Optics Photonics, 2015.
[11] 王克军, Wang Kejun, 宣明, Xuan Ming, 董吉洪, Dong Jihong. Design method of reflector component structure of space remote sensor[J]. Infrared and Laser Engineering, 45, 311-321(2016).
[13] [13] Weingrod I, Chou C Y, Holmes B, et al. Design of bipod flexure mounts f the IRISSpectrometer[C] SPIE, 2013, 8836: 88360Q1.
[14] [14] Chu C, Li Y, Chai W, et al. Design of bipod flexures f space mirr[C] International Symposium on Photoelectronic Detection & Imaging: Space Explation Technologies & Applications. International Society f Optics Photonics, 2011.
[15] [15] Selig J M, Ding X. A screw they of static beams[C] Intelligent Robots Systems. Proceedings. 2001 IEEERSJ International Conference on IEEE, 2001.
[16] Selig J M, Ding X. A screw theory of timoshenko beams[J]. Journal of Applied Mechanics, 76, 31-033(2009).
[18] [18] Livas J, Stebbins R, Arsenovic P, et al. Preliminary LISA telescope spacer design[C] Cospar Scientific Assembly, 2010.
[19] [19] ESA. Final technical rept of the (phase A) study of the laser interferometer space antenna[R]. Rept No. LIRPDS009, 2000.
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. Structural design optimization of space gravitational wave telescope primary mirror system[J]. Infrared and Laser Engineering, 2020, 49(7): 20190469
Category: Optical design
Received: Apr. 7, 2020
Accepted: --
Published Online: Sep. 18, 2020
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