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Generation of phase-modulated periodic optical signals by use of a polarization interferometer

机译:利用偏振干涉仪产生相位调制的周期性光信号

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摘要

Polarization phase-shifting interferometry is an established technique in optical metrology. In the present study it is shown that, by use of this technique, not only is it possible to realize any discrete magnitude of a predetermined phase difference (from 0 to 2π) between two light beams but also phase-modulated periodic optical signals can be generated simply by rotation of a polarizer or a retarder or both placed at the input of a conventional two-beam interferometer. Some representative linear and nonlinear periodic polarization-induced phase-modulated optical signals are shown. A linear phase modulation of 0-2π with constant output intensity is obtained in some cases. The Poincare sphere representation is introduced as a convenient tool for visualizing the dynamics involved in the generation of polarization-phase-modulated waveforms and as a possible aid to intelligent modification of the generated waveform as required. This all-optical technique of continuous and periodic phase variation should prove useful for introducing phase modulation without the need for electro-optic devices.
机译:偏振相移干涉术是光学计量学中已建立的技术。在本研究中表明,通过使用该技术,不仅可以实现两个光束之间预定相位差(从0到2π)的任何离散幅度,而且可以调制相位调制的周期性光信号。只需通过旋转偏振器或延迟器或同时将两者置于常规两光束干涉仪的输入端即可产生。示出了一些代表性的线性和非线性周期性偏振诱导的相位调制光信号。在某些情况下,会获得具有恒定输出强度的0-2π线性相位调制。引入Poincare球面表示法是一种方便的工具,用于可视化偏振相位调制波形的生成所涉及的动力学,并可以根据需要对生成的波形进行智能修改。这种连续和周期性相位变化的全光技术应被证明可用于引入相位调制,而无需电光设备。

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