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PHYSICAL REVIEW A 91, Entanglement-enhanced time-continuous quantum control in optomechanics Sebastian G. Hofer1,2,* and Klemens Hammerer2 1
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Document Date: 2015-03-23 11:09:36


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City

Liouville / Hannover / Vienna / /

Company

Creative Commons / J2 / /

Country

Germany / Austria / /

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Facility

Albert Einstein Institute / Leibniz University / University of Vienna / /

IndustryTerm

remote mechanical systems / control protocol / optomechanical systems / jump operator / closed-loop feedback solution / Typical quantum control protocols / teleportation protocol / quantum information processing / remote quantum systems / piezoelectric device / quantum networks / mechanical systems / quantum systems / possible applications / cavity-optomechanical systems / physical systems / micromechanical systems / /

Organization

Institute for Gravitational Physics / Institute for Theoretical Physics / American Physical Society / US Federal Reserve / University of Vienna / Faculty of Physics / Albert Einstein Institute / U.S. Securities and Exchange Commission / Leibniz University Hannover / Vienna Center for Quantum Science and Technology / /

Person

SEBASTIAN G. HOFER / /

Position

author / mechanical quadratures pm / Prime Minister / pm / pm / /

Product

Hamiltonian / /

ProvinceOrState

Gaussian-squeezed / /

Technology

radiation / laser / Typical quantum control protocols / control protocol / teleportation protocol / presented protocols / entanglement-based protocols / /

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