Quantum switching and quantum secret sharing manipulated by squeezed state light

Junxiang Zhang, Changde Xie, Kunchi Peng · 2002

Summary form only given. Two pairs of EPR beams with identical frequency and constant phase relation are composed on two beamsplitters to produce two pairs of conditional entangled beams, two halves of which are sent to two sending stations (Alices) and others to two receiving stations (Bobs). The EPR entangled beams initially result from two-mode quadrature squeezed state light produced by, for example, two nondegenerate optical parametric oscillators (NOPO) pumped by a same laser. Converting the squeezed component of one of the EPR sources between amplitude and phase, the input quantum state at a sender will be reproduced at two receivers in turn. The quantum switching performance between two receivers is only manipulated by the squeezed component of a two-mode squeezed state light, which can be experimentally demonstrated by controlling the parametric process either in amplification or deamplification.

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