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◆ EPJ Quantum Technology2026-05-04· Simple (philosophy)

Simple tunable phase-locked lasers for quantum technologies

Nicola Agnew, David Lowit, Aidan S. Arnold

原始摘要(英文原文)· Original abstract
Abstract In a wide range of quantum technology applications, ranging from atomic clocks to the creation of ultracold samples for atom interferometry, optimal laser sources are critical. In particular, two phase-locked laser sources with a precise difference frequency are needed for efficient coherent population trapping (CPT) clocks, gray molasses laser cooling, or driving Raman transitions. Here we show how a simple cost-effective laser diode can selectively amplify only one sideband of a fiber-electrooptically-modulated seed laser to produce moderate-power phase-locked light with sub-Hz relative linewidth and tunable difference frequencies up to $\approx 15\text{ GHz}$ ≈ 15 GHz . The architecture is readily scalable to multiple phase-locked lasers and could conceivably be used for future on-chip compact laser systems for quantum technologies.
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