Proposes a protocol for preparing Fock and Schrödinger cat states in levitated particles via time-dependent modulation of weakly nonharmonic potentials combined with transient wave-function delocalization.
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For generalized coherent states, the normalized intensity-field correlation deviating from unity is a sufficient nonclassicality witness, with a closed form for Kerr states.
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Quantum Non-Gaussian State Preparation of Levitated Particles via Time-Dependent Control of Weakly Nonharmonic Hybrid Potentials
Proposes a protocol for preparing Fock and Schrödinger cat states in levitated particles via time-dependent modulation of weakly nonharmonic potentials combined with transient wave-function delocalization.
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Characterization of Generalized Coherent States through Intensity-Field Correlations
For generalized coherent states, the normalized intensity-field correlation deviating from unity is a sufficient nonclassicality witness, with a closed form for Kerr states.