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Large-core fibre-cavity design for ring-down experiments

机译:用于折断实验的大芯纤维设计

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A fibre-cavity design based on highly reflective gold coatings, vapor-deposited to the two end faces of a large core multimode waveguide, is presented. In contrast to common fibre-cavity approaches, the laser pulses are not coupled through the reflective coatings into the cavity but through a micro hole in one of the fibre end faces, which reduces the commonly very high coupling loss to less than 1%. Accordingly, lower demands on the source power and the sensitivity of the receiver circuit result in lower costs of ring-down sensor approaches. An estimate of the ringdown time constant of the fibre-cavity is given and the influence of the micro-hole on the reflection loss is discussed.
机译:提出了一种基于高反射金涂层的纤维腔设计,蒸汽沉积到大芯多模波导的两个端面。与普通的纤维腔方法相比,激光脉冲不通过反射涂层耦合到腔内,而是通过其中一个光纤端面中的微孔,这将通常的非常高的耦合损耗降低至小于1%。因此,对源功率的需求较低,接收器电路的灵敏度导致折断传感器方法的降低成本。给出了纤维腔的旋转时间常数的估计,并且讨论了微孔对反射损耗的影响。

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