Enhanced visibility of two-mode thermal squeezed states via degenerate parametric amplification and resonance

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Abstract

Two-mode squeezed states, generated via non-degenerate parametric down-conversion, are invariably revealed via their entangled vacuum or correlated thermal fluctuations. Here, two-mode thermal squeezed states, generated in an electromechanical system, are made bright by means of degenerate parametric amplification of their constituent modes to the point where they are almost perfect, even when seeded from low intensity non-degenerate parametric down-conversion. More dramatically, activating the degenerate parametric resonances of the underlying modes yields perfect correlations which can be resolved via the coordinated switching of their phase bi-stable vibrations, without recourse to monitoring their thermal fluctuations. This ability to enhance the two-mode squeezed states and to decipher them without needing to observe their intrinsic noise is supported by both analytical and numerical modelling and it suggests that the technical constraints to making this phenomenon more widely available can be dramatically relaxed.

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Mahboob, I., Okamoto, H., & Yamaguchi, H. (2016). Enhanced visibility of two-mode thermal squeezed states via degenerate parametric amplification and resonance. New Journal of Physics, 18(8). https://doi.org/10.1088/1367-2630/18/8/083009

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