• DocumentCode
    1691108
  • Title

    Anderson metal-insulator transition with the atomic kicked rotor

  • Author

    Delande, Dominique

  • Author_Institution
    Lab. Kastler Brossel, UPMC-Paris 6, Paris, France
  • fYear
    2012
  • Firstpage
    1
  • Lastpage
    2
  • Abstract
    Using a cold atomic gas exposed to laser pulses - a realization of the chaotic quasiperiodic kicked rotor with three incommensurate frequencies - we study experimentally and theoretically the Anderson metal-insulator transition in three dimensions. Sensitive measurements of the atomic wave-function and the use of finite-size scaling techniques make it possible to unambiguously demonstrate the existence of a quantum phase transition and to measure its critical exponents. Both accurate numerical simulations and experimental measurements show the universality of the critical exponent. Using the self-consistent theory of localisation, we derive the analytic form of the wavefunction at the critical point, which is found in excellent agreement with the experimental observation.
  • Keywords
    Anderson model; SCF calculations; critical exponents; critical points; metal-insulator transition; wave functions; Anderson metal-insulator transition; atomic wave function; chaotic quasiperiodic kicked rotor; cold atomic gas; critical exponents; critical point; finite size scaling; incommensurate frequency; laser pulses; localisation; quantum phase transition; self-consistent theory; Atom lasers; Atomic beams; Atomic measurements; Gas lasers; Laser transitions; Phase measurement; Rotors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Lasers and Electro-Optics (CLEO), 2012 Conference on
  • Conference_Location
    San Jose, CA
  • Print_ISBN
    978-1-4673-1839-6
  • Type

    conf

  • Filename
    6327080