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Transfer matrix for treating stratified media including birefringent crystals

机译:用于处理包括双折射晶体在内的分层介质的转移基质

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Birefringent crystals are extensively used to manipulate polarized light. The generalized transfer matrix developed allows efficient calculation of the full polarization state of light transmitted through and reflected by a stack of arbitrarily many discrete layers of isotropic and birefringent materials at any frequency and angle of incidence. The matrix of a uniaxial birefringent crystal with arbitrary rotation is calculated, along with its reduction to the matrix of an isotropic medium. This method is of great practical importance where tight control of systematic effects is needed in optical systems employing birefringent crystals, one example being wave plates used by cosmic microwave background polarimetry with wide field-of-view telescopes.
机译:双折射晶体广泛用于操纵偏振光。所开发的广义传递矩阵可以有效地计算在任何频率和入射角下通过各向同性和双折射材料的任意多个离散层的堆栈透射和反射的光的全偏振状态。计算任意旋转的单轴双折射晶体的矩阵,以及将其简化为各向同性介质的矩阵。在采用双折射晶体的光学系统中,需要严格控制系统效果的情况下,该方法具有非常重要的实践意义。其中一个示例是宇宙微波背景极化仪使用宽视场望远镜使用的波片。

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