Optical analogue of the dynamical Casimir effect in a dispersion-oscillating fibre

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作者
Stefano Vezzoli
Arnaud Mussot
Niclas Westerberg
Alexandre Kudlinski
Hatef Dinparasti Saleh
Angus Prain
Fabio Biancalana
Eric Lantz
Daniele Faccio
机构
[1] University of Glasgow,School of Physics and Astronomy
[2] Heriot-Watt University,Institute of Photonics and Quantum Sciences
[3] Université Lille,Faculty of Computing, Engineering and Science
[4] CNRS,Déepartement dOptique P. M. Duffeux, Institut FEMTO
[5] UMR 8523-PhLAM-Physique des Lasers Atomes et Molécules,ST, UMR 6174 CNRS
[6] University of South Wales,undefined
[7] Université Bourgogne Franche-Comté,undefined
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摘要
The dynamical Casimir effect is the generation of pairs of real particles or photons from the vacuum as a result of a non-adiabatic change of a system parameter or boundary condition. As opposed to standard parametric amplification where the modulation occurs both in space and in time, this fundamental process requires a pure modulation in time, which makes its detection particularly challenging at optical frequencies. In this paper we experimentally demonstrate a realization of the analogue dynamical Casimir effect in the near-infrared optical regime in a dispersion-oscillating photonic crystal fibre. The experiments are based on the equivalence of the spatial modulation of the fibre core diameter to a pure temporal modulation when this is considered in the co-moving frame of the travelling pump pulse. We provide evidence of optical dynamical Casimir effect by measuring quantum correlations between the spectrally resolved photon pairs and prove their non-classical nature with photon anti-bunching.
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