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Drift correction in a multichannel integrated optical Young interferometer

机译:多通道集成光学杨氏干涉仪中的漂移校正

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We demonstrate that in a sensor based on a multichannel Young interferometer, the phase information obtained for different pairs of channels can be used to correct the long-term instability (drift) due to temperature differences between measuring and reference channels, the drift in the alignment of the setup, etc. Experiments show that the nature of a major part of the drift is such that the drift present in one of the channels can be determined by interpolation of the drift measured in the two adjacent channels. It is shown that a drift reduction of 10 times can be achieved as compared with the situation in which no correction is applied. We anticipate that these findings will permit the exploitation of the extreme sensitivity of interference-based sensors to a much greater extent.
机译:我们证明,在基于多通道杨氏干涉仪的传感器中,针对不同通道对获得的相位信息可用于校正由于测量通道和参考通道之间的温度差异,对准中的漂移而引起的长期不稳定性(漂移)实验表明,漂移的主要部分的性质使得可以通过对两个相邻通道中测得的漂移进行插值来确定一个通道中存在的漂移。结果表明,与不进行校正的情况相比,可以减少10倍的漂移。我们预计这些发现将允许在更大程度上利用基于干扰的传感器的极端灵敏度。

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