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      Stroboscopic qubit measurement with squeezed illumination

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          Abstract

          Microwave squeezing represents the ultimate sensitivity frontier for superconducting qubit measurement. However, observation of enhancement has remained elusive, in part because integration with conventional dispersive readout pollutes the signal channel with antisqueezed vacuum. Here we induce a stroboscopic light-matter coupling with superior squeezing compatibility, and observe an increase in the room-temperature signal-to-noise ratio of 24%. Squeezing the orthogonal phase controls measurement backaction, slowing dephasing by a factor of 1.8. This protocol enables the practical use of microwave squeezing for qubit state measurement.

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          Journal
          04 August 2017
          Article
          1708.01674
          1f606028-9a23-42aa-b847-3d99310b8399

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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