Literature DB >> 23804159

Integrated Mach-Zehnder interferometer for Bose-Einstein condensates.

T Berrada1, S van Frank, R Bücker, T Schumm, J-F Schaff, J Schmiedmayer.   

Abstract

Particle-wave duality enables the construction of interferometers for matter waves, which complement optical interferometers in precision measurement devices. This requires the development of atom-optics analogues to beam splitters, phase shifters and recombiners. Integrating these elements into a single device has been a long-standing goal. Here we demonstrate a full Mach-Zehnder sequence with trapped Bose-Einstein condensates confined on an atom chip. Particle interactions in our Bose-Einstein condensate matter waves lead to a nonlinearity, absent in photon optics. We exploit it to generate a non-classical state having reduced number fluctuations inside the interferometer. Making use of spatially separated wave packets, a controlled phase shift is applied and read out by a non-adiabatic matter-wave recombiner. We demonstrate coherence times a factor of three beyond what is expected for coherent states, highlighting the potential of entanglement as a resource for metrology. Our results pave the way for integrated quantum-enhanced matter-wave sensors.

Year:  2013        PMID: 23804159     DOI: 10.1038/ncomms3077

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  12 in total

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7.  Interferometry with non-classical motional states of a Bose-Einstein condensate.

Authors:  S van Frank; A Negretti; T Berrada; R Bücker; S Montangero; J-F Schaff; T Schumm; T Calarco; J Schmiedmayer
Journal:  Nat Commun       Date:  2014-05-30       Impact factor: 14.919

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Journal:  Sci Rep       Date:  2018-02-26       Impact factor: 4.379

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Journal:  Sci Rep       Date:  2018-10-23       Impact factor: 4.379

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