Many-Body Super- and Subradiance in Ordered Atomic Arrays

Fuente: arXiv
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Main Authors: Douglas, Alec, Su, Lin, Szurek, Michal, Groth, Robin, Brandstetter, Sandra, Marković, Ognjen, Rubies-Bigorda, Oriol, Ostermann, Stefan, Yelin, Susanne F., Greiner, Markus
Format: Preprint
Published: 2026
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_version_ 1866915940187242496
author Douglas, Alec
Su, Lin
Szurek, Michal
Groth, Robin
Brandstetter, Sandra
Marković, Ognjen
Rubies-Bigorda, Oriol
Ostermann, Stefan
Yelin, Susanne F.
Greiner, Markus
author_facet Douglas, Alec
Su, Lin
Szurek, Michal
Groth, Robin
Brandstetter, Sandra
Marković, Ognjen
Rubies-Bigorda, Oriol
Ostermann, Stefan
Yelin, Susanne F.
Greiner, Markus
contents When quantum emitters couple indistinguishably to light, they can synchronize into a collective light matter system with radiative properties profoundly different from those of independent particles. To date, the resulting collective effects have largely been confined to point like or homogeneous ensembles. Here, we open access to a qualitatively new collective regime by realizing geometrically ordered, spatially extended atom arrays with subwavelength spacing. This establishes a fundamentally new platform in which collective emission is no longer confined to a single Dicke mode but instead emerges from an ordered network of photon mediated interactions. We find that 2D atom arrays undergo strong super and subradiant emission. Despite subwavelength spacing, we achieve site resolved imaging and directly observe the buildup of spatial correlations, demonstrating the transformation of cooperative decay into a strongly correlated many-body process. We observe extensive scaling of superradiance, uncover superradiant revivals, and reveal the ferromagnetic nature of superradiance and the antiferromagnetic nature of subradiance. Our results realize a novel programmable platform for exploring and utilizing dissipative many-body quantum physics, opening new possibilities for photon capture, storage, and atom photon entanglement.
format Preprint
id arxiv_https___arxiv_org_abs_2604_11795
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Many-Body Super- and Subradiance in Ordered Atomic Arrays
Douglas, Alec
Su, Lin
Szurek, Michal
Groth, Robin
Brandstetter, Sandra
Marković, Ognjen
Rubies-Bigorda, Oriol
Ostermann, Stefan
Yelin, Susanne F.
Greiner, Markus
Quantum Physics
Quantum Gases
Atomic Physics
When quantum emitters couple indistinguishably to light, they can synchronize into a collective light matter system with radiative properties profoundly different from those of independent particles. To date, the resulting collective effects have largely been confined to point like or homogeneous ensembles. Here, we open access to a qualitatively new collective regime by realizing geometrically ordered, spatially extended atom arrays with subwavelength spacing. This establishes a fundamentally new platform in which collective emission is no longer confined to a single Dicke mode but instead emerges from an ordered network of photon mediated interactions. We find that 2D atom arrays undergo strong super and subradiant emission. Despite subwavelength spacing, we achieve site resolved imaging and directly observe the buildup of spatial correlations, demonstrating the transformation of cooperative decay into a strongly correlated many-body process. We observe extensive scaling of superradiance, uncover superradiant revivals, and reveal the ferromagnetic nature of superradiance and the antiferromagnetic nature of subradiance. Our results realize a novel programmable platform for exploring and utilizing dissipative many-body quantum physics, opening new possibilities for photon capture, storage, and atom photon entanglement.
title Many-Body Super- and Subradiance in Ordered Atomic Arrays
topic Quantum Physics
Quantum Gases
Atomic Physics
url https://arxiv.org/abs/2604.11795