| 01433 |
Bose-Einstein-Kondensation
Spezialvorlesung 3st mit Übung 1st
Mi 14-16, Fr 10-12 S75 (NW II)
Inhalt:
- Kondensation des idealen Bose-Gases
- Fallen und Kühlung
- Wechselwirkung: Mean-Field-Theorie des Kondensats
- Bogoliubov-Theorie
- Optische Detektion von Kondensaten
- Interferenz und Superfluidität von Materiewellen
Übungsblätter (verantwortlich: Christopher Gaul):
Blatt 1,
Blatt 2,
Blatt 3,
Blatt 4
Literatur:
 |
A. Einstein,
"Quantentheorie des einatomigen idealen Gases"
Sitzungsber. Preuss. Akad. Wiss. (1924)
|
 |
A. Einstein,
"Quantentheorie des einatomigen idealen Gases. Zweite Abhandlung"
Sitzungsber. Preuss. Akad. Wiss. (1925)
|
 |
W. Ketterle and N.J. van Druten,
"Bose-Einstein condensation of a
finite number of particles trapped in one or three
dimensions",
Phys. Rev. A 54, 656 (1996)
|
 |
M.-O. Mewes et al.,
"Bose-Einstein condensation in a tightly confining dc magentic trap",
Phys. Rev. Lett. 77, 416 (1996)
|
 |
J.M. Vogels et al.,
"Experimental observation of the Bogoliubov transformation for a
Bose-Einstein condensed gas",
Phys. Rev. Lett. 88, 060402 (2002)
|
|
Y. Castin,
"Bose-Einstein condensation in atomic gases: simple theoretical
results",
in 'Coherent atomic matter waves', Lecture Notes of Les Houches Summer
School, p.1-136, edited by R. Kaiser, C. Westbrook,
and F. David, EDP Sciences and Springer-Verlag
(2001),
preprint:
cond-mat/0105058
|
 |
M.R. Andrews et al.,
"Observation of interference between two Bose condensates",
Science 275, 637 (January 1997)
|
 |
Y. Shin et al.,
"Atom interferometry with Bose-Einstein condensates in a double-well potential",
Phys. Rev. Lett. 92, 050405 (2004)
|
|
|