Hanbury Brown and Twiss interferometry of single phonons from an optomechanical resonator

Markus Aspelmeyer, Simon Gröblacher, Andreas Wallucks, Igor Marinković, Richard A. Norte, Ralf Riedinger, Sungkun Hong, Sebastian G. Hofer
2017-09-22

SCID:  54.1/z7ca3s7a
Nano- and micromechanical solid-state quantum devices have become a focus of attention. Reliably generating nonclassical states of their motion is of interest both for addressing fundamental questions about macroscopic quantum phenomena and for developing quantum technologies in the domains of sensing and transduction. We used quantum optical control techniques to conditionally generate single-phonon Fock states of a nanomechanical resonator. We performed a Hanbury Brown and Twiss-type experiment that verified the nonclassical nature of the phonon state without requiring full state reconstruction. Our result establishes purely optical quantum control of a mechanical oscillator at the single-phonon level.
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2017-09-22
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Markus Aspelmeyer
Simon Gröblacher
Andreas Wallucks
Igor Marinković
Richard A. Norte
Ralf Riedinger
Sungkun Hong
Sebastian G. Hofer
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