Acta Optica Sinica, Volume. 30, Issue 4, 1201(2010)
UltraBroad Band and Hard Infrared Antiflection Coatings on ZnSe for 2-16 μm
[3] [3] C. L. Nagendra,G. K. M. Thutupalli. Design of three-layer antireflection coatings:a generalized approach[J]. Appl. Opt.,1988,27(11):2320-2333
[4] [4] A. Premoli,M. L. Rastello. Minimax refining of wideband antireflection coatings for wide angular incidence[J]. Appl. Opt.,1994,33(10):2018-2024
[5] [5] R. R. Phillips,V. Haynes,D. A. Naylor et al.. Simple method for antireflection coating ZnSe in the 20 μm wavelength range[J]. Appl. Opt.,2008,47(7):870-873
[7] [7] A. Ghosh,P. Kant,P. K. Bandyopadhyay et al.. Antireflection coating on germanium for dual channel (3-5 and 7.5-10.6 μm) thermal imagers[J]. Infrared Phy. & Technol.,1999,40(1):49-53
[8] [8] Pan Yongqiang,Zhu chang,Hang Lingxia et al.. Double waveband ( 3-5 μm and 8-12 μm) high performance infrared anti-reflection coatings on germanium substrate[J]. Laser & Infrared,2004,34(5):372-374
[9] [9] P. J. Martin,R. P. Netterfield. Optical thin films produced by ion based techniques[J]. Progress in Optics,1989,23:113-182
[10] [10] F. Lemarquis,G. Marchand,C. Amra et al.. Design and manufacture of low-absorption ZnS-YF3 antireflection coatings in the 3.5-16 μm spectral range[J]. Appl. Opt.,1998,37(19):4239-4244
[11] [11] A. Ghosh,P. K. Bandyopadhyay. Broad band antireflection coating on silicon from1.5 to 6 μm spectral band[J]. Infrared Phys. & Technol.,2005,46(5):408-411
[14] [14] Tang Jinfa,Gu Peifu,Liu Xu et al.. Modern Optical Thin Film Technology[M]. Zhejiang:Zhejiang University Press,2006. 20-27
Get Citation
Copy Citation Text
Pan Yongqiang, Hang Lingxia, Liang Haifeng, Tian Gang. UltraBroad Band and Hard Infrared Antiflection Coatings on ZnSe for 2-16 μm[J]. Acta Optica Sinica, 2010, 30(4): 1201
Category: Thin Films
Received: Apr. 29, 2009
Accepted: --
Published Online: Apr. 20, 2010
The Author Email: Yongqiang Pan (pyq_867@163.com)