Showing 21 - 40 results of 733 for search '"ultracold atom"', query time: 0.13s Refine Results
  1. 21

    Light scattering from ultracold atomic gases by Douglas, J, James Douglas

    Published 2010
    “…<p>Systems of ultracold atoms in optical potentials have taken a place at the forefront of research into many-body atomic systems because of the clean experimental environment they exist in and the tunability of the system parameters. …”
    Thesis
  2. 22

    Theory and applications of ultracold atoms in optical superlattices by Vaucher, B, Vaucher, Benoit

    Published 2008
    “…</p> <p>We first examine the dynamical properties of ultracold atoms trapped in a lattice whose periodicity is dynamically doubled. …”
    Thesis
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    QUANTUM REFLECTION AND THE INTERACTIONS OF ULTRACOLD ATOMS WITH SURFACES AND NANOSTRUCTURES by Javier Madroñero

    Published 2011-01-01
    “…These include the description of atom-surface interactions -which are originated from the vacuum fluctuations of the electromagnetic field-, the near-threshold characterization of quantum reflection, possible applications for trapping and guiding ultracold atoms, and the description of scattering processes in a basic hybrid system: ultracold atoms interacting with nanotubes.…”
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    Article
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    Observation of two-dimensional Anderson localisation of ultracold atoms by Donald H. White, Thomas A. Haase, Dylan J. Brown, Maarten D. Hoogerland, Mojdeh S. Najafabadi, John L. Helm, Christopher Gies, Daniel Schumayer, David A. W. Hutchinson

    Published 2020-10-01
    “…Here the authors report probable observation of 2D Anderson localization using ultracold atoms in a weak interaction regime.…”
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    Article
  7. 27

    Multiflavor Mott insulators in quantum materials and ultracold atoms by Gang V. Chen, Congjun Wu

    Published 2024-01-01
    “…Abstract Mott insulators with large and active (or multiflavor) local Hilbert spaces widely occur in quantum materials and ultracold atomic systems, and are dubbed “multiflavor Mott insulators”. …”
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    Article
  8. 28

    Second sound with ultracold atoms: a brief review by Hui Hu, Xing-Can Yao, Xia-Ji Liu

    Published 2022-09-01
    “…Abstract We briefly review the research on second sound in ultracold atomic physics, with emphasis on strongly interacting unitary Fermi gases with infinitely large s-wave scattering length. …”
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    Article
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    Emulating Molecular Orbitals and Electronic Dynamics with Ultracold Atoms by Dirk-Sören Lühmann, Christof Weitenberg, Klaus Sengstock

    Published 2015-08-01
    “…In recent years, ultracold atoms in optical lattices have proven their great value as quantum simulators for studying strongly correlated phases and complex phenomena in solid-state systems. …”
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    Article
  14. 34

    Spin Gradient Thermometry for Ultracold Atoms in Optical Lattices by Weld, David M., Medley, Patrick M., Miyake, Hirokazu, Hucul, David, Pritchard, David E., Ketterle, Wolfgang

    Published 2010
    “…We demonstrate spin gradient thermometry, a new general method of measuring the temperature of ultracold atoms in optical lattices. We realize a mixture of spins separated by a magnetic field gradient. …”
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    Article
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    Realization of the Harper Hamiltonian with Ultracold Atoms in Optical Lattices by Miyake, Hirokazu, Siviloglou, Georgios A., Ketterle, Wolfgang, Kennedy, Colin, Burton, William Cody

    Published 2015
    “…We experimentally realized the Harper Hamiltonian with charge neutral, ultracold atoms in optical lattices using laser-assisted tunneling and a potential energy gradient. …”
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    Article
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    Trapping ultracold atoms in time-averaged adiabatic potentials by Gildemeister, M

    Published 2010
    “…<p>This thesis describes the trapping and manipulation of ultracold atoms in time-averaged adiabatic potentials (TAAP). …”
    Thesis
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    Time-averaged adiabatic ring potential for ultracold atoms by Sherlock, B, Gildemeister, M, Owen, E, Nugent, E, Foot, C

    Published 2011
    “…We report the experimental realization of a versatile ring trap for ultracold atoms. The ring geometry is created by the time-averaged adiabatic potential resulting from the application of an oscillating magnetic bias field to a rf-dressed quadrupole trap. …”
    Journal article