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Effects of linear birefringence and polarization-dependent loss of supermirrors in cavity ring-down spectroscopy

机译:腔衰荡光谱中线性双折射和超反射镜的偏振相关损耗的影响

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摘要

In cavity ring-down spectroscopy (CRDS), residual or stress-induced birefringence (10~(-7)-10~(-6) rad) of supermirrors will lift the polarization degeneracy of TEM_(00) modes and generate two new polarization eigenstates in the cavity with small resonant frequency splitting (approx0.1 kHz); the new eigenstates are nearly linearly polarized. When both modes are excited simultaneously, the intracavity polarization state will evolve as the energy decays in the cavity. Without polarization analysis, such mode beating would not be observable. However, real supermirrors have a linear polarization-dependent loss (dichroism) that leads to a change in the loss rate as the polarization state evolves and thus to deviation from the expected single-exponential decay. We develop a model for the evolution of the intracavity polarization state and intensity for a cavity with both birefringence and polarization-dependent loss in the mirrors. We demonstrate, experimentally, that these parameters (both magnitudes and directions) can be extracted from a series of measurements of the cavity decay and depolarization of the transmitted light.
机译:在腔衰荡光谱(CRDS)中,超镜的残留或应力引起的双折射(10〜(-7)-10〜(-6)rad)将解除TEM_(00)模的偏振简并并产生两个新的偏振谐振腔中的本征态具有很小的共振频率分裂(约0.1 kHz);新的本征态几乎是线性极化的。当同时激发两种模式时,腔内极化状态将随着能量在腔内衰减而演变。没有极化分析,这种模式的跳动将是不可观察的。但是,实际的超镜具有线性偏振相关的损耗(二向色性),导致偏振态发展时损耗率发生变化,从而偏离预期的单指数衰减。我们开发了一个腔内偏振状态和强度的演化模型,该模型具有在镜子中双折射和偏振相关的损耗。我们通过实验证明,这些参数(大小和方向)都可以从腔衰变和透射光去极化的一系列测量中提取。

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