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Showing 1 to 6 of 6 for “"Ultracold atomic gas"”.

  1. Light Propagation in Ultracold Atomic Gases

    The propagation of light through an ultracold atomic gas is the main topic of the present work. The thesis consists of two parts. In Part I (Chapters 1,2,3), we give a complete description of the 1D photonic bands of a MI of two-level atoms paying attention to both band diagrams and reflectivity …

    trento Repository record for Light Propagation in Ultracold Atomic Gases (opens in a new tab)

  2. Light Scattering in Ultracold High Density Rubidium Vapor

    … world full of new opportunities for research in atomic, molecular and optical physics as well as condensed matter physics. It became possible to do experiments under conditions that are hard to achieve in condensed matter systems but recently have been observed in atomic systems. Bose Einstein …

    odu Repository record for Light Scattering in Ultracold High Density Rubidium Vapor (opens in a new tab)

  3. Universality in the Equilibration of Quenched Yukawa One Component Plasmas

    … clean realization of the Yukawa OCP, an ultracold neutral plasma (UNP) created by photoionization of an ultracold atomic gas. The rapid quench to a UNP results in an equilibration process known as Disorder Induced Heating (DIH). Even after DIH the plasma is strongly coupled, with Γ~3. …

    rice Repository record for Universality in the Equilibration of Quenched Yukawa One Component Plasmas (opens in a new tab)

  4. Interacting Fermi Gases

    Interacting Fermi gases are one of the chief paradigms of condensed matter physics. They have been studied since the beginning of the development of quantum mechanics, but continue to produce surprises today. Recent experimental developments in the field of ultracold atomic gases, as well as …

    cambridge Repository record for Interacting Fermi Gases (opens in a new tab)

  5. Topological phenomena in ultracold atomic gases

    … finding new ways to measure such consequences in ultracold atomic gas experiments. These experiments have significant advantages over the solid-state as ultracold atoms are controllable, tuneable and clean. They can also be used to investigate properties which are inaccessible in other quantum …

    cambridge Repository record for Topological phenomena in ultracold atomic gases (opens in a new tab)

  6. Quasi-One-Dimensional Ultracold Fermi Gases

    Ultracold atoms have become an essential tool in studying condensed matter phenomena. The advantage of atomic physics experiments is that they provide an easily tunable system. This experiment uses the lowest two ground state hyperfine levels of fermionic lithium. Having two different states …

    rice Repository record for Quasi-One-Dimensional Ultracold Fermi Gases (opens in a new tab)