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Response time improvement of liquid-crystal wavefront corrector using optimal cell gap of numerical computation
Wang Q.; Peng Z.; Fang Q.; Li X.; Qi M.; Liu Y.; Yao L.; Cao Z.; Mu Q.; Xuan L.
2013
发表期刊Optics Communications
ISSNISBN/00304018
期号305
摘要The optimal cell gap of nematic liquid-crystal wavefront corrector (LCWFC) is proved theoretically by numerical computation of the Ericksen-Leslie equation based on finite differences and confirmed experimentally. The numerical results of optimizing cell gap overcome the constraints of many approximations e.g. the small angle approximation and agree much better with the experimental data than those of analytical solution. Therefore, this method supplies a useful tool to achieve the optimal cell gap of a nematic LCWFC with high precision. Together with high birefringence and low rotational viscosity liquid crystal (LC) material effect, a nematic LCWFC with response time of sub-millisecond can be achieved in the visible spectral region. 2013 Elsevier B.V. All rights reserved.
收录类别SCI ; EI
语种中文
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/40835
专题中科院长春光机所知识产出
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Wang Q.,Peng Z.,Fang Q.,et al. Response time improvement of liquid-crystal wavefront corrector using optimal cell gap of numerical computation[J]. Optics Communications,2013(305).
APA Wang Q..,Peng Z..,Fang Q..,Li X..,Qi M..,...&Xuan L..(2013).Response time improvement of liquid-crystal wavefront corrector using optimal cell gap of numerical computation.Optics Communications(305).
MLA Wang Q.,et al."Response time improvement of liquid-crystal wavefront corrector using optimal cell gap of numerical computation".Optics Communications .305(2013).
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