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On the performance of the physicality-constrained maximum-likelihood estimation of Stokes vector

机译:关于物理受限Stokes向量的最大似然估计的性能

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摘要

We address the estimation of the Stokes vectors taking into account the physical realizability constraint. We propose a fast method for computing the constrained maximum-likelihood (CML) estimator for any measurement matrix, and we compare its performance with the classical empirical physicality-constrained estimator. We show that when the measurement matrix is based on four polarization states spanning a regular tetrahedron on the Poincare sphere, the two estimators are very similar, but the CML provides a better estimation of the intensity. For an arbitrary measurement matrix, the CML estimator does not always yield better estimation performance than the empirical one: their comparative performances depend on the measurement matrix, the actual Stokes vector and the signal-to-noise ratio.
机译:我们在考虑物理可实现性约束的情况下处理斯托克斯向量的估计。我们提出了一种用于计算任何测量矩阵的约束最大似然(CML)估计器的快速方法,并将其性能与经典的经验性物理约束估计器进行比较。我们表明,当测量矩阵基于庞加莱球上跨越规则四面体的四个极化状态时,这两个估计量非常相似,但是CML可以更好地估计强度。对于任意的测量矩阵,CML估计器并不总是比经验的估计器具有更好的估计性能:它们的比较性能取决于测量矩阵,实际的斯托克斯矢量和信噪比。

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