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液晶光阀

"液晶光阀"的翻译和解释

例句与用法

  • We have also calculated the resolution of the lclv according to the electrical field and the electron diffusion theory . it shows that the limiting resolution of 501p / mm can be obtained in our lclv
    液晶光阀的分辨率的分析,主要计算了光阀厚度、电场以及电荷扩散对光阀分辨率的影响,从理论上得到制备的液晶光阀分辨率应大于501p / mm的极限分辨率。
  • As one of the key devices in the opto - electronic information technology , lclv can be used as image amplifiers for large screen projection display , image wavelength converters and optical data processing and correlation
    液晶光阀作为光电信息处理技术中的一种关键器件,已被广泛应用于通讯、机器人视觉、光学计算机、神经网络、大屏幕投影显示等方面。
  • The blocking - layer and the dielectric mirror separate the write beam and the read beam , and the dielectric mirror reflects the read light also . in order to separating the write beam and the read beam quietly , and reflecting the read bean in the most limit
    液晶光阀的阻光层和介质镜层起着隔离写入光和读出光的作用,介质镜层还起着反射读出光的作用。
  • The photo - addressed light crystal light valve ( lclv ) is a high performance spatial light modulator . it is not only used in displays , but also widely used in optical information processing , optical computing and other information systems
    光寻址液晶光阀是一种性能优越的空间光调制器,它不仅应用于显示,也广泛应用于光信息处理、光计算以及其他信息系统中。
  • This paper discusses the structure and the properties of optical and electrical properties of a new multiplayer light - blocking layer for lclv ( liquid crystal light valve ) . theoretically discusses the requirement of light blocking layer for lclv
    本文从理论上讨论了投影显示用液晶光阀对光吸收层各种参数的要求,详细介绍了液晶光阀vopc和cdte复合吸收层的结构及其光电特性。
  • The research and development of ultraviolet ( uv ) photodiode and liquid crystal light valve ( lclv ) were reviewed in this thesis . detailed descriptions were given of the structure and operation , material characteristics , preparation processing and applications of the two devices
    全面介绍和回顾了当前紫外光电二极管和液晶光阀器件的研究与发展情况,对它们的工作原理,材料特性、制备工艺和应用背景作了详细的分析讨论。
  • Based on these above , the practical realization of bnxpi - x film applied in the ultraviolet band detecting device - ultraviolet liquid crystal light valve is discussed . the experiments and theory analyses prove that bnxpi - x film is a suitable candidate for ultraviolet liquid crystal light valve
    在以上对氮化硼薄膜以及磷掺杂氮化硼薄膜制备工艺、性能和微结构研究分析的基础上,本论文还探讨了薄膜材料在紫外空间光探测器件?紫外液晶光阀上应用的可行性。
  • The transfer of the carrier in photoconductor is anisotropy owing to the column structure of the film is anisotropy . on the basis of the new concept suggested in this paper , the maximum diffusion length in the lateral direction of the photo - carrier in the photoconductor ( which is related to the resolution of lclv directly ) as function of conductivities of both in lateral and normal directions in the film can be obtained as the expression as following . the nc - si / a - si : h photoconductor of lclv deposited and crystallized at low temperature of exactly 250 c stack column structure by al inducing a - si : h
    本文根据柱状结构存在各向异性的特点,并根据半导体物理知识,推出光导层光生载流子横向最大扩散长度(该扩散长度与液晶光阀光导层分辨率直接相关)与薄膜横向和纵向电导率关系的表达式为:由于a - si : h在al金属的诱导作用下在不高于250的温度下即开始晶化,本文对用金属al诱导非晶硅晶化制备的nc - si a - si : h薄膜进行研究。
  • In the lclv , the most important parameter , switching ratio of the lclv , is analyzed . it is mainly influenced by the dark - conductivity , ratio of light - to dark - conductivity , thickness of the photoconductor and the thickness of the liquid crystal . it is concluded that the switching ratio can be improved by matching the thickness of the liquid crystal and the photoconductpr , and the proper change region of the light conductivity of the photoconductor
    在电学匹配方面,我们对光电导材料的暗态电阻、亮暗电导比、厚度以及液晶的厚度等对光阀开关比的影响进行了分析,认为液晶光阀开关能力的提高很大程度上取决于光电导层和液晶层的厚度匹配,以及光电导层的电导变化的区域位置。
  • The principle and the application of liquid crystal light valve ( lclv ) and the development of the photoconductor of lclv have been reviewed in this paper . the growth mechanism of amorphous silicon film is analyzed . the resolution of the photoconductor that is affected by the lateral diffusion of the photo - carrier in photoconductor layer is also analyzed
    本文介绍了液晶光阀光导层的发展、液晶光阀的工作原理及应用,分析了非晶硅薄膜的生长机制以及载流子的横向扩散对分辨率的影响,详细研究了nc - si a - si : h柱状结构复合光导层液晶光阀的制备工艺。
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