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Development of a control scheme of homodyne detection for extracting ponderomotive squeezing from a Michelson interferometer

机译:用迈克尔逊干涉仪提取有质动力挤压的零差检测控制方案的研制

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摘要

We developed a control scheme of homodyne detection. To operate the homodyne detector as easy as possible, a simple Michelson interferometer is used. Here a motivation that the control scheme of the homodyne detection is developed is for our future experiment of extracting the ponderomotively squeezed vacuum fluctuations. To obtain the best signalto- noise ratio using the homodyne detection, the homodyne phase should be optimized. The optimization of the homodyne phase is performed by changing a phase of a local oscillator for the homodyne detection from a point at which a signal is maximized. In fact, in this experiment, using the developed control scheme, we locked the Michelson interferometer with the homodyne detector and changed the phase of the local oscillator for the homodyne detection. Then, we measured signals quantity changed by changing the phase of the local oscillator for the homodyne detection. Here we used the output from the homodyne detection as the signal.
机译:我们开发了零差检测的控制方案。为了尽可能容易地操作零差检测器,使用了一个简单的迈克尔逊干涉仪。在此,发展零差检测的控制方案的动机是为了我们将来提取纯动力挤压的真空波动的实验。为了使用零差检测获得最佳的信噪比,应优化零差相位。通过从使信号最大化的点改变用于零差检测的本地振荡器的相位来执行零差相位的优化。实际上,在本实验中,使用开发的控制方案,我们用零差检测器锁定了迈克尔逊干涉仪,并更改了用于零差检测的本地振荡器的相位。然后,我们测量了通过改变用于零差检测的本地振荡器的相位而改变的信号量。在这里,我们将零差检测的输出用作信号。

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