Acta Optica Sinica, Volume. 23, Issue 2, 220(2003)
LCD Real-Time Mask Technique for Fabrication of Continuous Microoptical Elements
[1] [1] Gale M T, Rossi M, Pedersen J. Fabrication of continuous-relief micro-optical element by direct laser writing in photoresist. Opt. Engng., 1994, 33(11):3556~3566
[2] [2] Kley E B, Schnabel B, Zeitner U E. E-beam lithography-an efficient tool for the fabrication of diffractive and microoptical element. Proc. SPIE, 1997, 3008:22~28
[3] [3] Sixt O P, Stauffer J M, Mayer J M et al.. One-step 3D shaping using a grey-tone mask for optical and microelectronic applications. Microelectron. Engng., 1994, 23:449~454
[4] [4] Suleski T J, O′Shea D C. Gray-scale masks for diffractive-optics fabrication: 1. Commercial slide imagers. Appl. Opt., 1995, 34(32):7507~7517
[5] [5] Henke W, Hoppe W, Quenzer H J et al.. Simulation and process design of gray-tone for the fabrication of arbitrarily shaped surface. Jpn. J. Appl. Phys., 1994, 33-1(12B):6809~6815
[6] [6] Lu K, Saleh B E A. Theory and design of the liquid crystal TV as an optical spatial light modulator. Opt. Engng., 1990, 29(3):240~245
[7] [7] Hopkins H H. On the diffraction theory of optical images. Proc. Roy. Soc., 1953, A217:408~432
[9] [9] Fimia A, Pascual I, Belendez A. Optimized spatial frequency response in silver halide sensitized gelatin. Appl. Opt., 1992, 31(20):4625~4627
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. LCD Real-Time Mask Technique for Fabrication of Continuous Microoptical Elements[J]. Acta Optica Sinica, 2003, 23(2): 220