An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links

10.1088/1367-2630/18/7/075013

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Main Authors: Aghamalyan D., Nguyen N.T., Auksztol F., Gan K.S., Valado M.M., Condylis P.C., Kwek L.-C., Dumke R., Amico L.
Other Authors: CENTRE FOR QUANTUM TECHNOLOGIES
Format: Article
Published: Institute of Physics Publishing 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/175252
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spelling sg-nus-scholar.10635-1752522023-08-30T22:30:40Z An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links Aghamalyan D. Nguyen N.T. Auksztol F. Gan K.S. Valado M.M. Condylis P.C. Kwek L.-C. Dumke R. Amico L. CENTRE FOR QUANTUM TECHNOLOGIES Bose-Einstein condensation Hubbard model Light modulators Quantum computers Quantum electronics Quantum interference devices Statistical mechanics Bose Hubbard model Bose-Einstein condensates Exact diagonalization Flux qubits Lattice potentials Physical systems Quantum fluctuation Spatial light modulators Quantum theory 10.1088/1367-2630/18/7/075013 New Journal of Physics 18 7 75013 2020-09-09T06:38:45Z 2020-09-09T06:38:45Z 2016 Article Aghamalyan D., Nguyen N.T., Auksztol F., Gan K.S., Valado M.M., Condylis P.C., Kwek L.-C., Dumke R., Amico L. (2016). An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links. New Journal of Physics 18 (7) : 75013. ScholarBank@NUS Repository. https://doi.org/10.1088/1367-2630/18/7/075013 1367-2630 https://scholarbank.nus.edu.sg/handle/10635/175252 Institute of Physics Publishing Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Bose-Einstein condensation
Hubbard model
Light modulators
Quantum computers
Quantum electronics
Quantum interference devices
Statistical mechanics
Bose Hubbard model
Bose-Einstein condensates
Exact diagonalization
Flux qubits
Lattice potentials
Physical systems
Quantum fluctuation
Spatial light modulators
Quantum theory
spellingShingle Bose-Einstein condensation
Hubbard model
Light modulators
Quantum computers
Quantum electronics
Quantum interference devices
Statistical mechanics
Bose Hubbard model
Bose-Einstein condensates
Exact diagonalization
Flux qubits
Lattice potentials
Physical systems
Quantum fluctuation
Spatial light modulators
Quantum theory
Aghamalyan D.
Nguyen N.T.
Auksztol F.
Gan K.S.
Valado M.M.
Condylis P.C.
Kwek L.-C.
Dumke R.
Amico L.
An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links
description 10.1088/1367-2630/18/7/075013
author2 CENTRE FOR QUANTUM TECHNOLOGIES
author_facet CENTRE FOR QUANTUM TECHNOLOGIES
Aghamalyan D.
Nguyen N.T.
Auksztol F.
Gan K.S.
Valado M.M.
Condylis P.C.
Kwek L.-C.
Dumke R.
Amico L.
format Article
author Aghamalyan D.
Nguyen N.T.
Auksztol F.
Gan K.S.
Valado M.M.
Condylis P.C.
Kwek L.-C.
Dumke R.
Amico L.
author_sort Aghamalyan D.
title An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links
title_short An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links
title_full An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links
title_fullStr An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links
title_full_unstemmed An atomtronic flux qubit: A ring lattice of Bose-Einstein condensates interrupted by three weak links
title_sort atomtronic flux qubit: a ring lattice of bose-einstein condensates interrupted by three weak links
publisher Institute of Physics Publishing
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/175252
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