Optomechanical Quantum State Tomography
ORAL
Abstract
We generate and characterize heralded quantum states of a mechanical resonator with a single added phonon. Our system consists of an optomechanical crystal cavity operated at about 10 millikelvin. We perform continuous wave sideband asymmetry measurements using single photon counters to calibrate the temperature of a 4 GHz mechanical mode. Photon and phonon pairs are generated using a continuous wave laser blue detuned from the optical cavity resonance. A detected photon at the cavity resonance frequency heralds the addition of a phonon to the mechanical mode; we characterize the generated states by continuously measuring the output cavity field, and performing tomography to determine the Husimi Q function describing the state of the mechanical oscillator.
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Presenters
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Rishi Patel
Stanford Univ, Stanford University
Authors
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Rishi Patel
Stanford Univ, Stanford University
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Timothy McKenna
Stanford Univ, Stanford University
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Zhaoyou Wang
Stanford Univ
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Jeremy Witmer
Stanford Univ, Stanford University
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Wentao Jiang
Stanford Univ, Stanford University
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Edward A Wollack
Stanford Univ, Stanford University
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Christopher J Sarabalis
Stanford Univ
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Pieter-Jan C. Stas
Stanford Univ
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Raphael Van Van Laer
Stanford Univ, Stanford University
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Amir Safavi-Naeini
Stanford Univ, Stanford University