首页> 外文会议>International symposium on photoelectronic detection and imaging >Research on Extinction Characteristics of Polaroids in Near Infrared Region
【24h】

Research on Extinction Characteristics of Polaroids in Near Infrared Region

机译:近红外区域偏光板消光特性研究

获取原文

摘要

In the research of detecting extinction ratio of polarimeter, some significant characters are discovered. One polaroid has perfect extinction ratio in the visible, but its extinction ratio becomes weak in near infrared (NIR) region, and the transmittance of a pair of vertical polaroid becomes strong in NIR region. This phenomenon has been found in several other polaroids as well. The transmittance increases greatly in NIR even if the crystal Glan-Taylor prism polarimeter with good polarization is used. The extinction ratio of the polaroid changes from 3:100 in visible to 98:100 in NIR. More experiments have shown that the weakening of extinction ratio and the enhancement of transmittance of a pair of vertical polaroid in NIR are closely associated with the intensity of incident light. When the light intensity increases, the effect becomes clearer. The transmittance exceeds the theoretical results from classical physical optics, reaching 98%. Our results provide two aspects of applications. First, because the extinction ratio of the polaroid is related to the wavelength of incident light, the polaroid can be used in definite spectral range. Second, a pair of vertical polaroid can perfectly filter the visible light, while making NIR light transmit. This research result can provide some conveniences at IR spectrum, IR photography, IR imaging and IR detection.
机译:在检测偏振仪的消光比的研究中,发现了一些重要的角色。一个偏振片在可见中具有完美的光消光比,但是其消光比在近红外(NIR)区域中变弱,并且在NIR区域中的一对垂直偏振片的透射率变强。这种现象也已在其他几种偏振片中发现。即使使用具有良好偏振的晶体格兰 - 泰勒棱镜极化仪,透射率也在NIR中增加。偏振片的消光比在NIR中可见的3:100变化为98:100。更多的实验表明,在NIR中,在NIR中的一对垂直偏振片的透射率的延迟弱化与入射光强度密切相关。当光强度增加时,效果变得更加清晰。透射率超过了经典物理光学元件的理论结果,达到98%。我们的结果提供了两个方面的应用。首先,因为偏振片的消光比与入射光的波长有关,所以可以在明确的光谱范围内使用偏振片。其次,一对垂直偏振片可以完全过滤可见光,同时制作nir透光。该研究结果可以在IR光谱,IR摄影,IR成像和红外检测中提供一些便利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号