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Increased cyclicity of atomic transitions via coherent interference of decay paths

Eliza Cornell, Benjamin Pingault, Gergő Thiering, Neil Sinclair, Ádám Gali, Marko Lončar·August 21, 2026
Quantum Physicsphysics.comp-phphysics.optics

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Abstract

Optical readout is a fundamental tool in atomic state measurement, yet the fidelity of optical readout is frequently limited by imperfect photon collection. This can be mitigated when readout occurs on a cycling transition which continuously fluoresces under resonant excitation, thus increasing signal and enabling single-shot readout. We present a method to extend the cyclicity of atomic transitions via coherent destructive interference between spurious decay paths. We describe the characteristics of atomic systems in which this method can be implemented and model several examples in which the number of emitted photons is increased by multiple orders of magnitude.

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