Generation of twin Fock states via transition from a two-component Mott insulator to a superfluid

We propose the dynamical creation of twin Fock states, which exhibit Heisenberg-limited interferometric phase sensitivities, in an optical lattice. In our scheme a two-component Mott insulator with two bosonic atoms per lattice site is melted into a superfluid. This process transforms local correlat...

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Main Authors: Rodríguez, M, Clark, S, Jaksch, D
Format: Journal article
Language:English
Published: American Physical Society 2007
Subjects:
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author Rodríguez, M
Clark, S
Jaksch, D
author_facet Rodríguez, M
Clark, S
Jaksch, D
author_sort Rodríguez, M
collection OXFORD
description We propose the dynamical creation of twin Fock states, which exhibit Heisenberg-limited interferometric phase sensitivities, in an optical lattice. In our scheme a two-component Mott insulator with two bosonic atoms per lattice site is melted into a superfluid. This process transforms local correlations between hyperfine states of atom pairs into multiparticle correlations extending over the whole system. The melting time does not scale with the system size which makes our scheme experimentally feasible.
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spelling oxford-uuid:8e971508-c464-42c6-b772-0a5297f5cf0a2022-03-26T22:58:47ZGeneration of twin Fock states via transition from a two-component Mott insulator to a superfluidJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8e971508-c464-42c6-b772-0a5297f5cf0aPhysicsAtomic and laser physicsEnglishOxford University Research Archive - ValetAmerican Physical Society2007Rodríguez, MClark, SJaksch, DWe propose the dynamical creation of twin Fock states, which exhibit Heisenberg-limited interferometric phase sensitivities, in an optical lattice. In our scheme a two-component Mott insulator with two bosonic atoms per lattice site is melted into a superfluid. This process transforms local correlations between hyperfine states of atom pairs into multiparticle correlations extending over the whole system. The melting time does not scale with the system size which makes our scheme experimentally feasible.
spellingShingle Physics
Atomic and laser physics
Rodríguez, M
Clark, S
Jaksch, D
Generation of twin Fock states via transition from a two-component Mott insulator to a superfluid
title Generation of twin Fock states via transition from a two-component Mott insulator to a superfluid
title_full Generation of twin Fock states via transition from a two-component Mott insulator to a superfluid
title_fullStr Generation of twin Fock states via transition from a two-component Mott insulator to a superfluid
title_full_unstemmed Generation of twin Fock states via transition from a two-component Mott insulator to a superfluid
title_short Generation of twin Fock states via transition from a two-component Mott insulator to a superfluid
title_sort generation of twin fock states via transition from a two component mott insulator to a superfluid
topic Physics
Atomic and laser physics
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AT clarks generationoftwinfockstatesviatransitionfromatwocomponentmottinsulatortoasuperfluid
AT jakschd generationoftwinfockstatesviatransitionfromatwocomponentmottinsulatortoasuperfluid