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Design of achromatic terahertz quarter wave plate by simulated annealing algorithm

机译:模拟退火算法的消色差太赫兹四分之一波片设计

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Achromatic THz wave plates are a prerequisite for THz polarization operation, especially in THz time domain spectroscopy techniques. We demonstrated in this paper the design of quartz achromatic THz quarter wave plate by simulated annealing algorithm. The phase retardation, retardation detuning, thickness and absorption loss for a quartz quarter wave plate that are combined by up to 8 quartz plates are discussed. It is shown that as the number of the combined quartz plates increasing, a remarkable retardation stability over an ultrabroadband frequency range (0.2–3 THz) could be achieved. It is found that there should be a compromise between the retardation detuning and absorption loss of THz wave plate. For a practical THz achromatic quarter wave plate operated from 0.2 THz to 3 THz, the optimized quartz plate number is about five.
机译:消色差THz波板是THz偏振操作的先决条件,特别是在THz时域光谱技术中。 我们通过模拟退火算法在本文中证明了石英卓越THZ四分之一波片的设计。 讨论了由多达8个石英板组合的石英季度波片的相位延迟,延迟静脉,厚度和吸收损失。 结果表明,随着组合的石英板的数量增加,可以实现超读频率范围内的显着延迟稳定性(0.2-3 ZHz)。 发现延迟损伤和THz波板的吸收损失之间应该存在折衷。 对于从0.2THz至3THz操作的实用THz消色谱间波片,优化的石英板数约为五。

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