首页> 外文会议>SPIE Conference on Optical Modeling and Performance Predictions >Analysis of thermally loaded transmissive optical elements
【24h】

Analysis of thermally loaded transmissive optical elements

机译:热负载透射光学元件的分析

获取原文

摘要

The performance metrics of many optical systems are affected by temperature changes in the system through different physical phenomena. Temperature changes cause materials to expand and contract causing deformations of optical components. The resulting stress states in transmissive optics can cause refractive changes that can affect optical performance. In addition, the temperature changes themselves can cause changes in the refractive properties of transmissive optics. Complex distributions of refractive indices that relate to the thermal profile, the thermo-optic refractive index profile, within the optical media can be predicted by the finite element method. One current technique for representing such refractive index profiles is through the generation of optical path difference (OPD) maps by integration along integration paths. While computationally efficient, this method has limitations in its ability to represent the effect of the index changes for rays associated with multiple field points and multiple wavelengths. A more complete representation of the thermo-optic refractive index profile may be passed to the optical analysis software through the use of a user defined gradient index material. The interface consists of a dynamic link library (DLL) which supplies indices of refraction to a user defined gradient index lens as ray tracing calculations are being performed. The DLL obtains its refractive index description from a database derived from the thermal analysis of the optics. This process allows optical analysis software to perform accurate ray tracing for an arbitrary refractive index profile induced by changes in temperature.
机译:许多光学系统的性能指标受到系统通过不同物理现象的温度变化的影响。温度变化导致材料扩展和收缩导致光学部件变形。透射光学元件中产生的应力状态会导致可能影响光学性能的屈光变化。另外,温度变化本身可能导致透射光学器件的折射性能变化。通过有限元方法可以预测与热曲线,热视光折射率曲线内的折射率的复杂分布可以通过有限元方法预测光学介质内。一种用于表示这种折射率分布的一种当前技术是通过沿集成路径集成来通过产生光路径差(OPD)映射。在计算上有效的同时,该方法具有代表与多场点和多个波长相关联的光线的索引变化的效果的能力的限制。通过使用用户定义的梯度索引材料,可以通过使用用户定义的梯度索引材料来传递给光学分析软件的更完整的表示。该接口由动态链接库(DLL)组成,该库(DLL)向用户定义的梯度索引镜头提供折射指令,因为正在执行光线跟踪计算。 DLL从源自光学热分析的数据库中获得其折射率描述。该过程允许光学分析软件对温度变化引起的任意折射率曲线进行准确的射线跟踪。

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