Operational Resource Theory of Continuous-Variable Nonclassicality

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Abstract

Genuinely quantum states of a harmonic oscillator may be distinguished from their classical counterparts by the Glauber-Sudarshan P representation - a state lacking a positive P function is said to be nonclassical. In this paper, we propose a general operational framework for studying nonclassicality as a resource in networks of passive linear elements and measurements with feed forward. Within this setting, we define new measures of nonclassicality based on the quantum fluctuations of quadratures, as well as the quantum Fisher information of quadrature displacements. These measures lead to fundamental constraints on the manipulation of nonclassicality, especially its concentration into subsystems, that apply to generic multimode non-Gaussian states. Special cases of our framework include no-go results in the concentration of squeezing and a complete hierarchy of nonclassicality for single-mode Gaussian states.

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Yadin, B., Binder, F. C., Thompson, J., Narasimhachar, V., Gu, M., & Kim, M. S. (2018). Operational Resource Theory of Continuous-Variable Nonclassicality. Physical Review X, 8(4). https://doi.org/10.1103/PhysRevX.8.041038

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