Phase locking and quantum statistics in a parametrically driven nonlinear resonator

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Abstract

We discuss phase-locking phenomenon at low-level of quanta and quantum statistics for parametrically driven nonlinear Kerr resonator (PDNR). Oscillatory mode of PDNR is created in the process of a degenerate down-conversion of photons under interaction with a train of external Gaussian pulses. We calculate the distribution of photon-number states, the second-order correlation function of photons, the Wigner functions of cavity mode showing two-fold symmetry in phase space, and we analyze formation of phase-locked states in the regular as well as the quantum chaotic regime of the PDNR.

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Hovsepyan, G. H., Shahinyan, A. R., Chew, L. Y., & Kryuchkyan, G. Y. (2016). Phase locking and quantum statistics in a parametrically driven nonlinear resonator. Physical Review A, 93(4). https://doi.org/10.1103/PhysRevA.93.043856

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