The maximum photon emission rate in atomic ensembles scales universally as atom number times optical depth at fixed density, unifying ordered and disordered systems from independent emission to the Dicke limit.
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A Möbius-inversion compiler that preserves native multiqubit controlled-phase gates improves estimated success rates for diagonal circuits on neutral-atom hardware.
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Optical depth dictates universal bounds on many-body decay in atomic ensembles
The maximum photon emission rate in atomic ensembles scales universally as atom number times optical depth at fixed density, unifying ordered and disordered systems from independent emission to the Dicke limit.
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M\"obius-Guided Diagonal-Gate Compilation with Native Multiqubit Controlled-Phase Gates on Neutral-Atom Processors
A Möbius-inversion compiler that preserves native multiqubit controlled-phase gates improves estimated success rates for diagonal circuits on neutral-atom hardware.