Generalized structure of higher order nonclassicality
Amit Verma, Anirban Pathak

TL;DR
This paper introduces a generalized framework for higher order nonclassicality, deriving new conditions for phenomena like higher order squeezing and subpoissonian photon statistics, and clarifies their independence through specific quantum state examples.
Contribution
It develops a unified approach to higher order nonclassicality, deriving simplified criteria and demonstrating that higher order phenomena are independent, with applications to various quantum states.
Findings
Higher order nonclassicality conditions are derived.
HOSPS and HOA are shown to be independent phenomena.
Certain quantum states exhibit higher order nonclassical features independently.
Abstract
A generalized notion of higher order nonclassicality (in terms of higher order moments) is introduced. Under this generalized framework of higher order nonclassicality, conditions of higher order squeezing and higher order subpoissonian photon statistics are derived. A simpler form of the Hong-Mandel higher order squeezing criterion is derived under this framework by using an operator ordering theorem introduced by us in [J. Phys. A. 33 (2000) 5607]. It is also generalized for multi-photon Bose operators of Brandt and Greenberg. Similarly, condition for higher order subpoissonian photon statistics is derived by normal ordering of higher powers of number operator. Further, with the help of simple density matrices, it is shown that the higher order antibunching (HOA) and higher order subpoissonian photon statistics (HOSPS) are not the manifestation of the same phenomenon and consequently…
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