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Multi-emitter solid state quantum optics

delete2025-12-31
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PRE
AI
J
Joel Q. Grim *
A
Allan S. Bracker
T
T. L. Reinecke
I
Ignas Lekavicius
A
Andrew L. Yeats
DOI:10.1088/2633-4356/ae0dd9delete
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Abstract

Abstract

En 中文
Photonic quantum science-which harnesses light-matter interactions down to the single photon level-provides advanced light sources for quantum sensing, communication, and computing. Integrating solid-state light sources on a photonic chip provides a means of creating scalable on-chip quantum networks with sophisticated optoelectronic circuitry. Extending beyond single emitters to multi-emitter systems is a frontier that offers substantial opportunities for fundamental scientific advances as well as applications that require multi-emitter quantum states. A key challenge in this endeavor is the spectral inhomogeneity of solid-state emitters, which results in non-identical emitters that cannot be interfaced with one another. This review describes recent advances in tailoring the emission properties of individual emitters and the multi-emitter demonstrations that are enabled by this control for a variety of prominent materials, as well as prospects for further development.
Keywords:
solid-state quantum emitters
color-center defects
self-assembled quantum dots
organic molecules
integrated quantum optics
quantum photonic integrated circuits

Journal

Materials for Quantum Technology cover
Materials for Quantum Technology
IF:
3.6
Papers:
155
Citations:
308

Organization

United States Department of Defense cover
United States Department of Defense
Scholars:
2.8W
Papers: 2.3W
Citations: 172