Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices

© 2020 The Author(s). Published by IOP Publishing Ltd We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in optical lattices. We compute the dynamics during adiabatic and optimized time-dependent ramps to produce ground states of effective spin Hamilton...

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Main Authors: Venegas-Gomez, A, Schachenmayer, J, Buyskikh, AS, Ketterle, W, Chiofalo, ML, Daley, AJ
Format: Article
Language:English
Published: IOP Publishing 2021
Online Access:https://hdl.handle.net/1721.1/132515
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author Venegas-Gomez, A
Schachenmayer, J
Buyskikh, AS
Ketterle, W
Chiofalo, ML
Daley, AJ
author_facet Venegas-Gomez, A
Schachenmayer, J
Buyskikh, AS
Ketterle, W
Chiofalo, ML
Daley, AJ
author_sort Venegas-Gomez, A
collection MIT
description © 2020 The Author(s). Published by IOP Publishing Ltd We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in optical lattices. We compute the dynamics during adiabatic and optimized time-dependent ramps to produce ground states of effective spin Hamiltonians, and determine the robustness to decoherence for realistic experimental system sizes and timescales. Ramping parameters near a phase transition point in both effective spin-1/2 and spin-1 models produces entangled spin-symmetric states that have potential future applications in quantum enhanced measurement. The preparation of these states and their robustness to decoherence is quantified by computing the quantum Fisher information (QFI) of final states. We identify that the generation of useful entanglement should in general be more robust to heating than it would be implied by the state fidelity, with corresponding implications for practical applications.
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spelling mit-1721.1/1325152021-09-21T03:38:56Z Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices Venegas-Gomez, A Schachenmayer, J Buyskikh, AS Ketterle, W Chiofalo, ML Daley, AJ © 2020 The Author(s). Published by IOP Publishing Ltd We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in optical lattices. We compute the dynamics during adiabatic and optimized time-dependent ramps to produce ground states of effective spin Hamiltonians, and determine the robustness to decoherence for realistic experimental system sizes and timescales. Ramping parameters near a phase transition point in both effective spin-1/2 and spin-1 models produces entangled spin-symmetric states that have potential future applications in quantum enhanced measurement. The preparation of these states and their robustness to decoherence is quantified by computing the quantum Fisher information (QFI) of final states. We identify that the generation of useful entanglement should in general be more robust to heating than it would be implied by the state fidelity, with corresponding implications for practical applications. 2021-09-20T18:22:47Z 2021-09-20T18:22:47Z 2020-11-02T17:56:05Z Article http://purl.org/eprint/type/JournalArticle https://hdl.handle.net/1721.1/132515 en 10.1088/2058-9565/abb004 Quantum Science and Technology Creative Commons Attribution 4.0 International license https://creativecommons.org/licenses/by/4.0/ application/pdf IOP Publishing IOP Publishing
spellingShingle Venegas-Gomez, A
Schachenmayer, J
Buyskikh, AS
Ketterle, W
Chiofalo, ML
Daley, AJ
Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices
title Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices
title_full Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices
title_fullStr Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices
title_full_unstemmed Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices
title_short Adiabatic preparation of entangled, magnetically ordered states with cold bosons in optical lattices
title_sort adiabatic preparation of entangled magnetically ordered states with cold bosons in optical lattices
url https://hdl.handle.net/1721.1/132515
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