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Quadrature Squeezing in the Cavity Mode Driven by Coherent Light and Interacting with Two-Level Atom

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arxiv 1812.04879 v2 pith:YD5GUW7N submitted 2018-12-12 quant-ph

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keywords cavitysqueezingatomcoherentdriveninteractinglightmode
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abstract

We have analyzed the quadrature squeezing in a cavity mode driven by coherent light and interacting with a two-level atom. We have found that the cavity mode is in a squeezed state, with the maximum quadrature squeezing being $50\%$ below the vacuum-state level. We have also considered the superposition of a pair of cavity modes, each driven by coherent light and interacting with a two-level atom. We have found that the superposed cavity modes are in a squeezed state and the squeezing occurs in both quadratures. We have established that the uncertainty relation perfectly holds for this case. In addition, we have observed that the sum of the maximum squeezing in the plus and minus quadratures is $50\%$.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Squeezing in Both the Plus and Minus Quadratures with the Uncertainty Relation Perfectly Holding

    quant-ph 2019-09 reject novelty 4.0 of 10

    For a coherently driven cavity mode coupled to a cascade three-level atom, the paper's steady-state variances imply both quadratures are squeezed, but only relative to a model-defined reference and using a modified un...

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