Coherent single-atom superradiance.

Kim, Junki; Yang, Daeho; Oh, Seung-Hoon; An, Kyungwon · Science · 2018

basic_science · Level V

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Abstract

Superradiance is a quantum phenomenon emerging in macroscopic systems whereby correlated single atoms cooperatively emit photons. Demonstration of controlled collective atom-field interactions has resulted from the ability to directly imprint correlations with an atomic ensemble. Here we report cavity-mediated coherent single-atom superradiance: Single atoms with predefined correlation traverse a high-quality factor cavity one by one, emitting photons cooperatively with the <i>N</i> atoms that have already gone through the cavity (<i>N</i> represents the number of atoms). Enhanced collective photoemission of <i>N</i>-squared dependence was observed even when the intracavity atom number was less than unity. The correlation among single atoms was achieved by nanometer-precision position control and phase-aligned state manipulation of atoms by using a nanohole-array aperture. Our results demonstrate a platform for phase-controlled atom-field interactions.