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November 29, 2018Physical Review Letters35 citationsOpen Access

Light-Induced Coherence in an Atom-Cavity System

CGChristoph GeorgesJCJayson G. CosmeLMLudwig Mathey

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Abstract

We demonstrate a light-induced formation of coherence in a cold atomic gas system that utilizes the suppression of a competing density wave (DW) order. The condensed atoms are placed in an optical cavity and pumped by an external optical standing wave, which induces a long-range interaction mediated by photon scattering and a resulting DW order above a critical pump strength. We show that the light-induced temporal modulation of the pump wave can suppress this DW order and restore coherence. This establishes a foundational principle of dynamical control of competing orders analogous to a hypothesized mechanism for light-induced superconductivity in high-T₂ cuprates.

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Georges et al. (2018) studied this question.

synapsesocial.com/papers/6a21c5584e02479be07c2a93https://doi.org/10.1103/physrevlett.121.220405
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