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Bose-Einstein condensation in dilute gases

By: Contributor(s): Material type: TextLanguage: English Publication details: Cambridge: Cambridge University Press, 2002.Description: xii, 402p. : illISBN:
  • 0521665809
Subject(s): Other classification:
  • C9D1 P2 TC
Summary: In 1925 Einstein predicted that at low temperatures particles in a gas could all reside in the same quantum state. This gaseous state, a Bose-Einstein condensate, was produced in the laboratory for the first time in 1995 and investigating such condensates is one of the most active areas in contemporary physics. The authors of this graduate-level textbook explain this exciting new subject in terms of basic physical principles, without assuming detailed prior knowledge. Chapters cover the statistical physics of trapped gases, atomic properties, cooling and trapping atoms, interatomic interactions, structure of trapped condensates, collective modes, rotating condensates, superfluidity, interference phenomena, and trapped Fermi gases. Problem sets are also included.
Item type: Textbook
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Textbook Central Science Library Central Science Library C9D1 P2 TC (Browse shelf(Opens below)) Available SL1177092

Includes bibliographical references.; Appendix 394-395p.; Index 397-401p.

In 1925 Einstein predicted that at low temperatures particles in a gas could all reside in the same quantum state. This gaseous state, a Bose-Einstein condensate, was produced in the laboratory for the first time in 1995 and investigating such condensates is one of the most active areas in contemporary physics. The authors of this graduate-level textbook explain this exciting new subject in terms of basic physical principles, without assuming detailed prior knowledge. Chapters cover the statistical physics of trapped gases, atomic properties, cooling and trapping atoms, interatomic interactions, structure of trapped condensates, collective modes, rotating condensates, superfluidity, interference phenomena, and trapped Fermi gases. Problem sets are also included.

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