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Schroedinger cat-like states by conditional measurements on a beam-splitter

arXiv:quant-ph/9612011 · doi:10.1103/PhysRevA.55.3184

Abstract

A scheme for generating Schrödinger cat-like states of a single-mode optical field by means of conditional measurement is proposed. Feeding into a beam splitter a squeezed vacuum and counting the photons in one of the output channels, the conditional states in the other output channel exhibit a number of properties that are very similar to those of superpositions of two coherent states with opposite phases. We present analytical and numerical results for the photon-number and quadrature-component distributions of the conditional states and their Wigner and Husimi functions. Further, we discuss the effect of realistic photocounting on the states.

6 figures(divided in subfigures) using a4.sty