A comparison between higher-order nonclassicalities of superposition engineered coherent and thermal states

Author:

Deepak 11,Chatterjee Arpita11

Affiliation:

1. Department of Mathematics, J.C. Bose University of Science and Technology, YMCA, Faridabad 121006, India.

Abstract

We consider an experimentally obtainable superposition (SUP) operator, defined by using a generalized superposition of products of field annihilation (a) and creation (a) operators of the type A = saa + taa with s2 + t2 = 1. We apply this SUP operator on coherent and thermal quantum states, and the states thus produced are referred to as SUP-operated coherent state (SOCS) and SUP-operated thermal state (SOTS), respectively. In the present work, we report a comparative study between the higher-order nonclassical properties of SOCS and SOTS. The comparison is performed by using a set of nonclassicality witnesses (e.g., higher-order anti-bunching, higher-order sub-Poissonian photon statistics, higher-order squeezing, Agarwal–Tara parameter, Klyshko’s condition). The existence of higher-order nonclassicalities in SOCS and SOTS have been investigated for the first time. In view of possible experimental verification of the proposed scheme, we present exact calculations to reveal the effect of non-unit quantum efficiency of quantum detector on higher-order nonclassicalities.

Publisher

Canadian Science Publishing

Subject

General Physics and Astronomy

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