Spacecraft Recovery & Remote Sensing, Volume. 45, Issue 2, 83(2024)
Study on the Isolation of Optical Antennas in Laser Communication
[2] Xizheng KE, Hanli LIANG. Airborne Laser Communication System with Automated Tracking. International Journal of Optics, 9920368-1-9920368-8(2021).
[3] [3] MARSHALEK R G, MECHERLE G S, JDAN P. Systemlevel Comparison of Optical Rf Technologies f Spacetospace Spacetoground Communication Links Circa 2000[COL]Proceedings Volume 2699, FreeSpace Laser Communication Technologies VIII. 1996. https:doi.g10.111712.238409.
[9] J DANIEL. MCCARTHY. Operating Characteristics of the StratoscopeII Balloon-borne Telescope. IEEE Transactions on Aer-ospace and Electronic Systems, 5, 323-329(2007).
[14] [14] MERCADO, ROMEO I, RYZHIKOV L. Designs of Apochromats Superachromatic Objectives[C]GDRDNER L R, KEVIN P. ThompsonProceedings of International Optical Design Conference 1998, Volume 3482. Bellingham, WA: SPIE, 1998: 321331.
[18] S R SANKAR, J C LIVAS. Initial Progress with Numerical Modelling of Scattered Light in a Candidate eLISA Telescope. Journal of Physics: Conference Series, 610, 012031(2015).
[21] [21] THOMAS M E, BLODGETT D W, HAHN D V. Analysis Representation of BSDF BRDF Measurements[C]Optical Diagnostic Methods f Inganic Materials III. [S.l.]: SPIE, 2003, 5192: 158167.
[23] [23] HARVEY J E, VERNOLD C L. Modifying the HarveyShack Surface Scatter They[C]GU ZuHan, MARADUDIN A A. Scattering Surface Roughness II. Bellingham, WA : SPIE, 1998.
Get Citation
Copy Citation Text
Yehui MA, Junhua YAN, Chao ZHANG, Jianfeng LIU. Study on the Isolation of Optical Antennas in Laser Communication[J]. Spacecraft Recovery & Remote Sensing, 2024, 45(2): 83
Category:
Received: Jan. 17, 2024
Accepted: --
Published Online: May. 29, 2024
The Author Email: