Literature DB >> 23569266

Direct imaging of topological edge states in cold-atom systems.

Nathan Goldman1, Jean Dalibard, Alexandre Dauphin, Fabrice Gerbier, Maciej Lewenstein, Peter Zoller, Ian B Spielman.   

Abstract

Detecting topological order in cold-atom experiments is an ongoing challenge, the resolution of which offers novel perspectives on topological matter. In material systems, unambiguous signatures of topological order exist for topological insulators and quantum Hall devices. In quantum Hall systems, the quantized conductivity and the associated robust propagating edge modes--guaranteed by the existence of nontrivial topological invariants--have been observed through transport and spectroscopy measurements. Here, we show that optical-lattice-based experiments can be tailored to directly visualize the propagation of topological edge modes. Our method is rooted in the unique capability for initially shaping the atomic gas and imaging its time evolution after suddenly removing the shaping potentials. Our scheme, applicable to an assortment of atomic topological phases, provides a method for imaging the dynamics of topological edge modes, directly revealing their angular velocity and spin structure.

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Year:  2013        PMID: 23569266      PMCID: PMC3637785          DOI: 10.1073/pnas.1300170110

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  16 in total

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8.  Wilson fermions and axion electrodynamics in optical lattices.

Authors:  A Bermudez; L Mazza; M Rizzi; N Goldman; M Lewenstein; M A Martin-Delgado
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9.  Detecting chiral edge states in the Hofstadter optical lattice.

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10.  Conduction of ultracold fermions through a mesoscopic channel.

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  3 in total

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Authors:  N R Cooper; J Dalibard; I B Spielman
Journal:  Rev Mod Phys       Date:  2019       Impact factor: 54.494

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Journal:  Nat Commun       Date:  2015-07-06       Impact factor: 14.919

3.  Wavefront dislocations reveal the topology of quasi-1D photonic insulators.

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Journal:  Nat Commun       Date:  2021-06-11       Impact factor: 14.919

  3 in total

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