Structured wQED with locally patterned coupling directionalities yields four distinct excitation dynamics from subradiant eigenmode interferences, with tunable localization-delocalization via spacing and chirality that remains robust at beta >= 0.99.
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A qubit probe coupled to a subset of oscillator nodes exhibits enhanced Fisher information in its excited-state population as the inactive fraction approaches the aging transition point, enabling precise estimation even in the classical regime.
A symmetry-organized configuration framework classifies superradiant phases in Dicke lattices, explaining multistability in dissipative cases and unique ground-state selection in closed systems.
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Manipulating Excitation Dynamics in Structured Waveguide Quantum Electrodynamics
Structured wQED with locally patterned coupling directionalities yields four distinct excitation dynamics from subradiant eigenmode interferences, with tunable localization-delocalization via spacing and chirality that remains robust at beta >= 0.99.
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Quantum sensing of aging transitions
A qubit probe coupled to a subset of oscillator nodes exhibits enhanced Fisher information in its excited-state population as the inactive fraction approaches the aging transition point, enabling precise estimation even in the classical regime.
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Configuration-based understanding of superradiant phase transitions in Dicke lattices
A symmetry-organized configuration framework classifies superradiant phases in Dicke lattices, explaining multistability in dissipative cases and unique ground-state selection in closed systems.