Please use this identifier to cite or link to this item: https://doi.org/10.1088/1674-1056/ac01e3
Title: Quantum computation and simulation with vibrational modes of trapped ions
Authors: Chen, Wentao
Gan, Jaren 
Zhang, Jing-Ning
Matuskevich, Dzmitry
Kim, Kihwan
Keywords: Science & Technology
Physical Sciences
Physics, Multidisciplinary
Physics
quantum computation
quantum simulation
trapped ions
vibrational modes
PHOTOELECTRON-SPECTROSCOPY
CONTINUOUS-VARIABLES
FLUCTUATION THEOREM
JARZYNSKI EQUALITY
PHASE-TRANSITION
STATE
ENTANGLEMENT
INFORMATION
LIMIT
THERMODYNAMICS
Issue Date: Jun-2021
Publisher: IOP Publishing Ltd
Citation: Chen, Wentao, Gan, Jaren, Zhang, Jing-Ning, Matuskevich, Dzmitry, Kim, Kihwan (2021-06). Quantum computation and simulation with vibrational modes of trapped ions. CHINESE PHYSICS B 30 (6). ScholarBank@NUS Repository. https://doi.org/10.1088/1674-1056/ac01e3
Abstract: Vibrational degrees of freedom in trapped-ion systems have recently been gaining attention as a quantum resource, beyond the role as a mediator for entangling quantum operations on internal degrees of freedom, because of the large available Hilbert space. The vibrational modes can be represented as quantum harmonic oscillators and thus offer a Hilbert space with infinite dimensions. Here we review recent theoretical and experimental progress in the coherent manipulation of the vibrational modes, including bosonic encoding schemes in quantum information, reliable and efficient measurement techniques, and quantum operations that allow various quantum simulations and quantum computation algorithms. We describe experiments using the vibrational modes, including the preparation of non-classical states, molecular vibronic sampling, and applications in quantum thermodynamics. We finally discuss the potential prospects and challenges of trapped-ion vibrational-mode quantum information processing.
Source Title: CHINESE PHYSICS B
URI: https://scholarbank.nus.edu.sg/handle/10635/248938
ISSN: 1674-1056
2058-3834
DOI: 10.1088/1674-1056/ac01e3
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