When heterodyning beats homodyning: an assessment with quadrature moments
arXiv:1701.07539 · doi:10.1103/PhysRevA.95.042322
Abstract
We examine the moment-reconstruction performance of both the homodyne and heterodyne (double-homodyne) measurement schemes for arbitrary quantum states and introduce moment estimators that optimize the respective schemes for any given data. In the large-data limit, these estimators are as efficient as the maximum-likelihood estimators. We then illustrate the superiority of the heterodyne measurement for the reconstruction of the first and second moments by analyzing Gaussian states and many other significant non-classical states.
16 pages, 6 figures
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