Bose-Einstein condensation in dilute gases /

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Bibliographic Details
Author / Creator:Pethick, Christopher.
Imprint:New York : Cambridge University Press, 2002.
Description:xii, 402 p. : ill. ; 26 cm.
Language:English
Subject:
Format: Print Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/4565767
Hidden Bibliographic Details
Other authors / contributors:Smith, H., 1939-
ISBN:0521661943
0521665809 (pb.)
Notes:Includes bibliographical references and index.

MARC

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245 1 0 |a Bose-Einstein condensation in dilute gases /  |c C.J. Pethick, H. Smith. 
260 |a New York :  |b Cambridge University Press,  |c 2002. 
300 |a xii, 402 p. :  |b ill. ;  |c 26 cm. 
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504 |a Includes bibliographical references and index. 
505 0 0 |g 1.  |t Introduction --  |g 1.1.  |t Bose-Einstein condensation in atomic clouds --  |g 1.2.  |t Superfluid [superscript 4]He --  |g 1.3.  |t Other condensates --  |g 1.4.  |t Overview --  |g 2.  |t The non-interacting Bose gas --  |g 2.1.  |t The Bose distribution --  |g 2.2.  |t Transition temperature and condensate fraction --  |g 2.3.  |t Density profile and velocity distribution --  |g 2.4.  |t Thermodynamic quantities --  |g 2.5.  |t Effect of finite particle number --  |g 2.6.  |t Lower-dimensional systems --  |g 3.  |t Atomic properties --  |g 3.1.  |t Atomic structure --  |g 3.2.  |t The Zeeman effect --  |g 3.3.  |t Response to an electric field --  |g 3.4.  |t Energy scales --  |g 4.  |t Trapping and cooling of atoms --  |g 4.1.  |t Magnetic traps --  |g 4.2.  |t Influence of laser light on an atom --  |g 4.3.  |t Laser cooling: the Doppler process --  |g 4.4.  |t The magneto-optical trap --  |g 4.5.  |t Sisyphus cooling --  |g 4.6.  |t Evaporative cooling --  |g 4.7.  |t Spin-polarized hydrogen --  |g 5.  |t Interactions between atoms --  |g 5.1.  |t Interatomic potentials and the van der Waals interaction --  |g 5.2.  |t Basic scattering theory --  |g 5.3.  |t Scattering length for a model potential --  |g 5.4.  |t Scattering between different internal states --  |g 5.5.  |t Determination of scattering lengths --  |g 6.  |t Theory of the condensed state --  |g 6.1.  |t The Gross-Pitaevskii equation --  |g 6.2.  |t The ground state for trapped bosons --  |g 6.3.  |t Surface structure of clouds --  |g 6.4.  |t Healing of the condensate wave function --  |g 7.  |t Dynamics of the condensate --  |g 7.1.  |t General formulation --  |g 7.2.  |t Elementary excitations --  |g 7.3.  |t Collective modes in traps --  |g 7.4.  |t Surface modes --  |g 7.5.  |t Free expansion of the condensate --  |g 7.6.  |t Solitons --  |g 8.  |t Microscopic theory of the Bose gas --  |g 8.1.  |t Excitations in a uniform gas --  |g 8.2.  |t Excitations in a trapped gas --  |g 8.3.  |t Non-zero temperature --  |g 8.4.  |t Collisional shifts of spectral lines --  |g 9.  |t Rotating condensates --  |g 9.1.  |t Potential flow and quantized circulation --  |g 9.2.  |t Structure of a single vortex --  |g 9.3.  |t Equilibrium of rotating condensates --  |g 9.4.  |t Vortex motion --  |g 9.5.  |t The weakly-interacting Bose gas under rotation --  |g 10.  |t Superfluidity --  |g 10.1.  |t The Landau criterion --  |g 10.2.  |t The two-component picture --  |g 10.3.  |t Dynamical processes --  |g 10.4.  |t First and second sound --  |g 10.5.  |t Interactions between excitations --  |g 11.  |t Trapped clouds at non-zero temperature --  |g 11.1.  |t Equilibrium properties --  |g 11.2.  |t Collective modes --  |g 11.3.  |t Collisional relaxation above T[subscript c] --  |g 12.  |t Mixtures and spinor condensates --  |g 12.1.  |t Mixtures --  |g 12.2.  |t Spinor condensates. 
650 0 |a Bose-Einstein condensation.  |0 http://id.loc.gov/authorities/subjects/sh92005509 
650 7 |a Bose-Einstein condensation.  |2 fast  |0 http://id.worldcat.org/fast/fst00836775 
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927 |t Library of Congress classification  |a QC175.47.B65 P48 2002  |l JCL  |c JCL-Sci  |e SARO  |e CRERAR  |b 60097350  |i 7177825