R. Filip

Emergence of super-Poissonian light from indistinguishable single-photon emitters

A. Kovalenko [1], D. Babjak [1,2], A. LeÅ¡undák, L. Podhora [1], L. Lachman [1], P. ObÅ¡il, T. Pham [2], O. Číp, R. Filip [1], L. SlodiÄ\udc8dka

Abstract

The optical interference constitutes a paramount resource in modern physics. At the scale of individual atoms and photons, it is a diverse concept that causes different coherent phenomena. We present the experimental characterization of both coherent and statistical properties of light emitted from ensembles of trapped ions increasing with a number of contributing phase-incoherent independent atomic particles ranging from a single to up to several hundreds. It conclusively demonstrates how super-Poissonian quantum statistics non-trivially arises purely from the finite number of indistinguishable single-photon emitters in the limit of a single detection mode. The achieved new optical emission regime in which these independent atoms contribute coherently to the super-Poissonian statistics provides a new perspective on the emergence of optical coherence at the atomic scale and constitutes a unique toolbox for its generation and control at the most microscopic level.

Unconditional accumulation of nonclassicality in a single-atom mechanical oscillator

L. Podhora [1], T. Pham [2,1], A. LeÅ¡undák, P. ObÅ¡il, M. Čížek, O. Číp, P. Marek [1], L. SlodiÄ\udc8dka, R. Filip [1]

Abstract

We report on the robust experimental accumulation of nonclassicallity of motion of a single trapped ion. The nonclassicality stems from deterministic incoherent modulation of thermal phonon number distribution implemented by a laser excitation of nonlinear coupling between the ion's internal - electronic levels and external - motional states. We demonstrate that the repetitive application of this nonlinear process monotonically accumulates the observable state nonclassicality. The output states converge to a phonon number distribution with high overlap with a particular Fock state and visible quantum non-Gaussian aspects including corresponding negative Wigner function. The resulting oscillator states prove deterministic transition in the hierarchy of quantum non-Gaussianity up to four phonons. This transition is very robust against experimental imperfections and produces increasing entanglement potential.