First experimental realization of a quantum-regime single-ion phonon laser for electrometry, achieving 14.15 μV/m/√Hz sensitivity governed by finite-time Liouvillian dynamics.
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2026 2verdicts
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Quantum mirrors transfer complete photonic continuous-variable state information to an atomic control system, enabling tomography via atom measurements alone using kernel functions and Wigner reconstruction.
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Finite-Time Electrometry with a Quantum-Regime Single-Ion Phonon Laser
First experimental realization of a quantum-regime single-ion phonon laser for electrometry, achieving 14.15 μV/m/√Hz sensitivity governed by finite-time Liouvillian dynamics.
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Continuous-Variable Quantum State Tomography Enabled by Quantum Mirrors
Quantum mirrors transfer complete photonic continuous-variable state information to an atomic control system, enabling tomography via atom measurements alone using kernel functions and Wigner reconstruction.