Literature DB >> 29543021

Dark State Optical Lattice with a Subwavelength Spatial Structure.

Y Wang1, S Subhankar1, P Bienias1, M Łącki2,3,4, T-C Tsui1, M A Baranov3,4, A V Gorshkov1,5, P Zoller3,4, J V Porto1, S L Rolston1.   

Abstract

We report on the experimental realization of a conservative optical lattice for cold atoms with a subwavelength spatial structure. The potential is based on the nonlinear optical response of three-level atoms in laser-dressed dark states, which is not constrained by the diffraction limit of the light generating the potential. The lattice consists of a one-dimensional array of ultranarrow barriers with widths less than 10 nm, well below the wavelength of the lattice light, physically realizing a Kronig-Penney potential. We study the band structure and dissipation of this lattice and find good agreement with theoretical predictions. Even on resonance, the observed lifetimes of atoms trapped in the lattice are as long as 44 ms, nearly 10^{5} times the excited state lifetime, and could be further improved with more laser intensity. The potential is readily generalizable to higher dimensions and different geometries, allowing, for example, nearly perfect box traps, narrow tunnel junctions for atomtronics applications, and dynamically generated lattices with subwavelength spacings.

Year:  2018        PMID: 29543021     DOI: 10.1103/PhysRevLett.120.083601

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  4 in total

1.  Coherent optical nanotweezers for ultracold atoms.

Authors:  P Bienias; S Subhankar; Y Wang; T-C Tsui; F Jendrzejewski; T Tiecke; G Juzeliūnas; L Jiang; S L Rolston; J V Porto; A V Gorshkov
Journal:  Phys Rev A (Coll Park)       Date:  2020       Impact factor: 3.140

2.  Realization of a stroboscopic optical lattice for cold atoms with subwavelength spacing.

Authors:  T-C Tsui; Y Wang; S Subhankar; J V Porto; S L Rolston
Journal:  Phys Rev A (Coll Park)       Date:  2020       Impact factor: 2.971

3.  Nanoscale Atomic Density Microscopy.

Authors:  S Subhankar; Y Wang; T-C Tsui; S L Rolston; J V Porto
Journal:  Phys Rev X       Date:  2019-04-01       Impact factor: 15.762

4.  Quantum gas magnifier for sub-lattice-resolved imaging of 3D quantum systems.

Authors:  Luca Asteria; Henrik P Zahn; Marcel N Kosch; Klaus Sengstock; Christof Weitenberg
Journal:  Nature       Date:  2021-11-24       Impact factor: 49.962

  4 in total

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