Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate

Xu K, Liu Y, Miller D, Chin JK, Setiawan W, Ketterle W (2006)
Physical Review Letters 96(18): 180405.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Xu, K; Liu, Y; Miller, DavidUniBi; Chin, JK; Setiawan, W; Ketterle, W
Abstract / Bemerkung
We studied quantum depletion in a gaseous Bose-Einstein condensate. An optical lattice enhanced the atomic interactions and modified the dispersion relation resulting in strong quantum depletion. The depleted fraction was directly observed as a diffuse background in the time-of-flight images. Bogoliubov theory provides a semiquantitative description for our observations of depleted fractions in excess of 50%.
Erscheinungsjahr
2006
Zeitschriftentitel
Physical Review Letters
Band
96
Ausgabe
18
Art.-Nr.
180405
ISSN
0031-9007
eISSN
1079-7114
Page URI
https://pub.uni-bielefeld.de/record/2328472

Zitieren

Xu K, Liu Y, Miller D, Chin JK, Setiawan W, Ketterle W. Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate. Physical Review Letters. 2006;96(18): 180405.
Xu, K., Liu, Y., Miller, D., Chin, J. K., Setiawan, W., & Ketterle, W. (2006). Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate. Physical Review Letters, 96(18), 180405. https://doi.org/10.1103/PhysRevLett.96.180405
Xu, K, Liu, Y, Miller, David, Chin, JK, Setiawan, W, and Ketterle, W. 2006. “Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate”. Physical Review Letters 96 (18): 180405.
Xu, K., Liu, Y., Miller, D., Chin, J. K., Setiawan, W., and Ketterle, W. (2006). Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate. Physical Review Letters 96:180405.
Xu, K., et al., 2006. Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate. Physical Review Letters, 96(18): 180405.
K. Xu, et al., “Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate”, Physical Review Letters, vol. 96, 2006, : 180405.
Xu, K., Liu, Y., Miller, D., Chin, J.K., Setiawan, W., Ketterle, W.: Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate. Physical Review Letters. 96, : 180405 (2006).
Xu, K, Liu, Y, Miller, David, Chin, JK, Setiawan, W, and Ketterle, W. “Observation of strong quantum depletion in a gaseous Bose-Einsteincondensate”. Physical Review Letters 96.18 (2006): 180405.

8 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Quantum Depletion of a Homogeneous Bose-Einstein Condensate.
Lopes R, Eigen C, Navon N, Clément D, Smith RP, Hadzibabic Z., Phys Rev Lett 119(19), 2017
PMID: 29219529
Negative absolute temperature for motional degrees of freedom.
Braun S, Ronzheimer JP, Schreiber M, Hodgman SS, Rom T, Bloch I, Schneider U., Science 339(6115), 2013
PMID: 23288533
Excess noise depletion of a Bose-Einstein condensate in an optical cavity.
Szirmai G, Nagy D, Domokos P., Phys Rev Lett 102(8), 2009
PMID: 19257722
Direct mapping of the finite temperature phase diagram of strongly correlated quantum models.
Zhou Q, Kato Y, Kawashima N, Trivedi N., Phys Rev Lett 103(8), 2009
PMID: 19792739
Extended coherence time with atom-number squeezed states.
Li W, Tuchman AK, Chien HC, Kasevich MA., Phys Rev Lett 98(4), 2007
PMID: 17358746

31 References

Daten bereitgestellt von Europe PubMed Central.


AUTHOR UNKNOWN, 1995

AUTHOR UNKNOWN, j phys (moscow) 11(), 1947
Strong-coupling expansions for the pure and disordered Bose-Hubbard model.
Freericks JK, Monien H., Phys. Rev., B Condens. Matter 53(5), 1996
PMID: 9983779
Theory of Bose-Einstein condensation in trapped gases
Dalfovo, Reviews of Modern Physics 71(3), 1999
Dynamic structure factor and momentum distribution of a trapped Bose gas
Zambelli, Physical Review A 61(6), 2000
Collisionless dynamics of dilute Bose gases: Role of quantum and thermal fluctuations
Giorgini, Physical Review A 61(6), 2000
Cold Bosonic Atoms in Optical Lattices
Jaksch, Physical Review Letters 81(15), 1998
Strongly Enhanced Inelastic Collisions in a Bose-Einstein Condensate near Feshbach Resonances
Stenger, Physical Review Letters 82(12), 1999
Excitation of Phonons in a Bose-Einstein Condensate by Light Scattering
Stamper-Kurn, Physical Review Letters 83(15), 1999
Stable 85Rb bose-einstein condensates with widely tunable interactions
Cornish SL, Claussen NR, Roberts JL, Cornell EA, Wieman CE., Phys. Rev. Lett. 85(9), 2000
PMID: 10970616
Magnetic transport of trapped cold atoms over a large distance
Greiner, Physical Review A 63(3), 2001
Quantum phases in an optical lattice
van, Physical Review A 63(5), 2001
Boson localization and the superfluid-insulator transition.
Fisher MP, Weichman PB, Grinstein G, Fisher DS., Phys. Rev., B Condens. Matter 40(1), 1989
PMID: 9990946
Gutzwiller wave function for a model of strongly interacting bosons.
Krauth W, Caffarel M, Bouchaud JP., Phys. Rev., B Condens. Matter 45(6), 1992
PMID: 10001873
Experimental observation of the Bogoliubov transformation for a Bose-Eeinstein condensed gas.
Vogels JM, Xu K, Raman C, Abo-Shaeer JR, Ketterle W., Phys. Rev. Lett. 88(6), 2002
PMID: 11863793
Squeezed states in a Bose-Einstein condensate.
Orzel C, Tuchman AK, Fenselau ML, Yasuda M, Kasevich MA., Science 291(5512), 2001
PMID: 11264529
Bogoliubov approach to superfluidity of atoms in an optical lattice
Rey, Journal of Physics B Atomic Molecular and Optical Physics 36(5), 2003
Bose-Einstein condensates in 1D optical lattices
Krämer, The European Physical Journal D 27(3), 2003
Transition from a strongly interacting 1d superfluid to a Mott insulator.
Stoferle T, Moritz H, Schori C, Kohl M, Esslinger T., Phys. Rev. Lett. 92(13), 2004
PMID: 15089587
Variational ansatz for the superfluid Mott-insulator transition in optical lattices.
Garcia-Ripoll JJ, Cirac J, Zoller P, Kollath C, Schollwock U, von Delft J., Opt Express 12(1), 2004
PMID: 19471510
Collective excitations of a degenerate gas at the BEC-BCS crossover.
Bartenstein M, Altmeyer A, Riedl S, Jochim S, Chin C, Denschlag JH, Grimm R., Phys. Rev. Lett. 92(20), 2004
PMID: 15169351
Tonks-Girardeau gas of ultracold atoms in an optical lattice.
Paredes B, Widera A, Murg V, Mandel O, Folling S, Cirac I, Shlyapnikov GV, Hansch TW, Bloch I., Nature 429(6989), 2004
PMID: 15152247
Experimental study of the BEC-BCS crossover region in lithium 6.
Bourdel T, Khaykovich L, Cubizolles J, Zhang J, Chevy F, Teichmann M, Tarruell L, Kokkelmans SJ, Salomon C., Phys. Rev. Lett. 93(5), 2004
PMID: 15323676
Observation of a one-dimensional Tonks-Girardeau gas.
Kinoshita T, Wenger T, Weiss DS., Science 305(5687), 2004
PMID: 15284454
1D Bose gases in an optical lattice
Köhl, Applied Physics B 79(8), 2004
Breakdown of hydrodynamics in the radial breathing mode of a strongly interacting Fermi gas
Kinast, Physical Review A 70(5), 2004
Perturbative corrections to the Gutzwiller mean-field solution of the Mott-Hubbard model
Schroll, Physical Review A 70(5), 2004
Mott-insulator–to–superfluid transition in the Bose-Hubbard model: A strong-coupling approach
Sengupta, Physical Review A 71(3), 2005
Phase coherence of an atomic Mott insulator.
Gerbier F, Widera A, Folling S, Mandel O, Gericke T, Bloch I., Phys. Rev. Lett. 95(5), 2005
PMID: 16090855
Sodium Bose-Einstein condensates in an optical lattice
Xu, Physical Review A 72(4), 2005
Interference pattern and visibility of a Mott insulator
Gerbier, Physical Review A 72(5), 2005
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 16712348
PubMed | Europe PMC

Suchen in

Google Scholar