Spatially inhomogeneous phase-modulating interferometry by non-quadrature amplitude modulation

U. Rivera-Ortega, C. Meneses-Fabian, G. Rodríguez-Zurita
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Abstract

A new method to generate inhomogeneous spatial phase variation and phase retrieval is proposed. This method is based under the scheme of three beams forming two Mach-Zehnder interferometers in series, where one arm is considered as the probe beam, while the other two will compose the reference beam where a phase difference within the range of (0,π ) is kept and this remains spatially variable in opposition to the classical PSI method. The generation of phase-shifts is done by on-off nonquadrature amplitude modulation. Although the phase difference between the reference beams are spatially variable having as a consequence that the visibility and phase variations are inhomogeneous, it will be demonstrated that it is still possible to retrieve the phase of the object and also to measure the phase variation. An analytic discussion and experimental results will be shown to sustain the proposed method.
非正交调幅的空间非均匀调相干涉测量
提出了一种产生非均匀空间相位变化和相位恢复的新方法。该方法采用三束串联形成两个马赫-曾德尔干涉仪的方案,其中一条臂作为探测光束,另两条臂作为参考光束,其相位差保持在(0,π)范围内,并且与经典PSI方法相反,该方法在空间上是可变的。相移的产生是通过开-关非正交调幅实现的。虽然参考光束之间的相位差在空间上是可变的,因此可见性和相位变化是不均匀的,但它仍然可以检索物体的相位并测量相位变化。分析讨论和实验结果将显示支持所提出的方法。
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