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Numerical simulation of optical devices

机译:光学装置的数值模拟

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The description of the optical-generation phenomena has been incorporated in the semiconductor-device analysis program HFIELDS, keeping the structural and geometrical flexibility of the original code. To this end a substantial effort has been devoted to the software implementation. The latter required the introduction of a number of optical windows and interleaved material layers through which a radiation with arbitrary spectrum, incidence angle, and polarization state enters the crystal. The corresponding generation rate at each node of the discretization grid is then evaluated by adding up the contribution of each monochromatic component of the impinging radiation. The code equipped with this new capability makes the description of realistic semiconductor optical sensors feasible. Black-body radiation has been incorporated into the code to allow for the simulation of solar cells. After a brief review of the underlying physics, the software implementation is described and a number of examples are illustrated.
机译:对光产生现象的描述已包含在半导体器件分析程序HFIELDS中,从而保持了原始代码的结构和几何灵活性。为此,已经在软件实现上进行了大量的努力。后者需要引入多个光学窗口和交错的材料层,具有任意光谱,入射角和偏振态的辐射通过该层进入晶体。然后,通过将入射辐射的每个单色分量的贡献相加来评估离散化网格每个节点上的相应生成速率。配备此新功能的代码使对现实的半导体光学传感器的描述变得可行。黑体辐射已被纳入代码中,以允许模拟太阳能电池。在简要回顾了基础物理之后,将描述软件实现并举例说明许多示例。

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