Experimental speedup of quantum dynamics through squeezing

Fuente: arXiv
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Main Authors: Burd, S. C., Knaack, H. M., Srinivas, R., Arenz, C., Collopy, A. L., Stephenson, L. J., Wilson, A. C., Wineland, D. J., Leibfried, D., Bollinger, J. J., Allcock, D. T. C., Slichter, D. H.
Format: Preprint
Published: 2023
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author Burd, S. C.
Knaack, H. M.
Srinivas, R.
Arenz, C.
Collopy, A. L.
Stephenson, L. J.
Wilson, A. C.
Wineland, D. J.
Leibfried, D.
Bollinger, J. J.
Allcock, D. T. C.
Slichter, D. H.
author_facet Burd, S. C.
Knaack, H. M.
Srinivas, R.
Arenz, C.
Collopy, A. L.
Stephenson, L. J.
Wilson, A. C.
Wineland, D. J.
Leibfried, D.
Bollinger, J. J.
Allcock, D. T. C.
Slichter, D. H.
contents We show experimentally that a broad class of interactions involving quantum harmonic oscillators can be made stronger (amplified) using a unitary squeezing protocol. While our demonstration uses the motional and spin states of a single trapped $^{25}$Mg$^{+}$ ion, the scheme applies generally to Hamiltonians involving just a single harmonic oscillator as well as Hamiltonians coupling the oscillator to another quantum degree of freedom such as a qubit, covering a large range of systems of interest in quantum information and metrology applications. Importantly, the protocol does not require knowledge of the parameters of the Hamiltonian to be amplified, nor does it require a well-defined phase relationship between the squeezing interaction and the rest of the system dynamics, making it potentially useful in instances where certain aspects of a signal or interaction may be unknown or uncontrolled.
format Preprint
id arxiv_https___arxiv_org_abs_2304_05529
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Experimental speedup of quantum dynamics through squeezing
Burd, S. C.
Knaack, H. M.
Srinivas, R.
Arenz, C.
Collopy, A. L.
Stephenson, L. J.
Wilson, A. C.
Wineland, D. J.
Leibfried, D.
Bollinger, J. J.
Allcock, D. T. C.
Slichter, D. H.
Quantum Physics
Atomic Physics
We show experimentally that a broad class of interactions involving quantum harmonic oscillators can be made stronger (amplified) using a unitary squeezing protocol. While our demonstration uses the motional and spin states of a single trapped $^{25}$Mg$^{+}$ ion, the scheme applies generally to Hamiltonians involving just a single harmonic oscillator as well as Hamiltonians coupling the oscillator to another quantum degree of freedom such as a qubit, covering a large range of systems of interest in quantum information and metrology applications. Importantly, the protocol does not require knowledge of the parameters of the Hamiltonian to be amplified, nor does it require a well-defined phase relationship between the squeezing interaction and the rest of the system dynamics, making it potentially useful in instances where certain aspects of a signal or interaction may be unknown or uncontrolled.
title Experimental speedup of quantum dynamics through squeezing
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2304.05529