Opto-Electronic Engineering, Volume. 38, Issue 7, 17(2011)
Focal Ratio Degradation of Large Core Spectrum Light-transmitting Optical Fiber
[1] [1] Angel J R P,Adams M T,Boroson T A,et al. A very large optical telescope array linked with fused silica fibers [J]. Astrophysical Journal (S0004-637X), 1977,218(1):776-782.
[2] [2] Parry Ian R. Optical fibres for integral field spectroscopy [J]. New Astronomy Reviews (S1387-6473),2006,50(4/5):301-304.
[3] [3] Hill John M,Angel J R P. Multiple object spectroscopy-The Medusa spectrograph [J]. Astrophysical Journal (S0571-7248), 1980,242(2):69-72.
[4] [4] Watson F G,Terry P. Fiber Characterization at Fast Focal Ratios [J]. Pro. of SPIE(S0277-786X),1995,2476:10-19.
[5] [5] Gunn James E,Siegmund Walter A,Mannery Edward J,et al. The 2.5 m Telescope of the Sloan Digital Sky Survey [J]. The Astronomical Journal (S0004-6256),2006,131(4):2332-2359.
[6] [6] Ferwana Saleh,Eckhardt Hanns-Simon,Thorsten Simon,et al. All-silica fiber with low or medium OH-content for broadband applications in astronomy [J]. Pro. of SPIE(S0277-786X),2004:5494:598-609.
[7] [7] Barden Samuel C. Review of fibre optic properties for astronomical spectroscopy [C]//Astronomical Society of the Pacific Conference Series, Fiber Optics in Astronomy III, Puerto de la Cruz, Canary Islands, Spain, December 2-4, 1977. USA: ASP,1998,2476:14-19.
[8] [8] Poppet C L,Allington-Smith J R. Fibre systems for future astronomy: anomalous wavelength–temperature Effects [J]. Monthly Notices of the Royal Astronomical Scoiety (S0035-8711),2007,379(1):143-150.
[9] [9] Bershady Matthew A,Andersen David R,Sparse Pak,et al. A Formatted Fiber Field Unit for the WIYN Telescope Bench Spectrograph [J]. The Astrophysical Journal Supplement Series (S0067-0049),2005,156:311-344.
[10] [10] Gerardo Avila,Paul Singh,Maja Albertsen. Photometrical scrambling gain and focal ratio degradation in fibers for astronomical instruments [J]. Pro. of SPIE(S0277-786X),2006:6269:626950-1-9.
[11] [11] Murphy J D,MacQueen P J. Focal Ratio Degradation and Transmission in VIRUS-P Optical Fibers [J]. Pro. of SPIE(S0277-786X),2008:7018:70182T.1-70182T.12.
[12] [12] Roberto Speziali,Daniele Liberi,Francesco D'Alessio,et al. Preparation and testing of a fiber MOS unit feeding a near-infrared spectrograph [J]. Pro. of SPIE(S0277-786X),2004:5492:1520-1530.
[13] [13] DONG Yan,ZHU Bing. Analysis of focal ratio degradation of light-transmitting optical fiber in LAMOST [J]. Journal of University of Science and Technology of China,2007,37(6):606-611.
[14] [14] WAN Xiao-ke,GE Jian,GUO Peng-cheng,et al. A fiber feed system for a multiple object Doppler instrument at Sloan Telescope [J]. Pro. of SPIE(S0277-786X),2006:6269:62692T-1-9.
[15] [15] Gerardo Avila,Bernard Buzzoni,Martin Casse. Fiber characterization and compact scramblers at ESO [J]. Pro. of SPIE (S0277-786X),1998:3355:900-904.
[16] [16] Ramsey Lawrence W. Focal ratio degradation in optical fibers of astronomical interest [J]. Astronomical Society of the Pacific (S1050-3390),1988,3:26-39.
[17] [17] WANG Yang-chun. The value of precision simulated by non-sequential ray tracing method [D]. Hangzhou:Zhejiang University,2006.
Get Citation
Copy Citation Text
WANG Sen, ZHU Bing. Focal Ratio Degradation of Large Core Spectrum Light-transmitting Optical Fiber[J]. Opto-Electronic Engineering, 2011, 38(7): 17
Category:
Received: Jan. 11, 2011
Accepted: --
Published Online: Aug. 10, 2011
The Author Email: