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Slowing Quantum Decoherence by Squeezing in Phase Space

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arxiv 1707.06244 v2 pith:CV54NXPS submitted 2017-07-19 quant-ph

classification quant-ph
keywords statesdecoherencesqueezingfunctionphasequantumspacesuperpositions
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Non-Gaussian states, and specifically the paradigmatic Schr\"odinger cat state, are well-known to be very sensitive to losses. When propagating through damping channels, these states quickly loose their non-classical features and the associated negative oscillations of their Wigner function. However, by squeezing the superposition states, the decoherence process can be qualitatively changed and substantially slowed down. Here, as a first example, we experimentally observe the reduced decoherence of squeezed optical coherent-state superpositions through a lossy channel. To quantify the robustness of states, we introduce a combination of a decaying value and a rate-of-decay of the Wigner function negativity. This work, which uses squeezing as an ancillary Gaussian resource, opens new possibilities to protect and manipulate quantum superpositions in phase space.

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Cited by 1 Pith paper

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

  1. Enhancing dissipative cat qubit protection by squeezing

    quant-ph 2025-02 conditional novelty 7.0 of 10

    A squeezed deformation of dissipative cat qubits, implemented with an extra pump, boosts bit-flip time 160-fold at fixed phase-flip time.

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