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Observation of Bose-Einstein Condensation in a Dilute Atomic Vapor

Michael H. Anderson; J. R. Ensher; M. R. Matthews; Carl Wieman; Eric Cornell · Science · 1995

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A Bose-Einstein condensate was produced in a vapor of rubidium-87 atoms that was confined by magnetic fields and evaporatively cooled. The condensate fraction first appeared near a temperature of 170 nanokelvin and a number density of 2.5 x 10(12) per cubic centimeter and could be preserved for more than 15 seconds. Three primary signatures of Bose-Einstein condensation were seen. (i) On top of a broad thermal velocity distribution, a narrow peak appeared that was centered at zero velocity. (ii) The fraction of the atoms that were in this low-velocity peak increased abruptly as the sample temperature was lowered. (iii) The peak exhibited a nonthermal, anisotropic velocity distribution expected of the minimum-energy quantum state of the magnetic trap in contrast to the isotropic, thermal velocity distribution observed in the broad uncondensed fraction.

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APA 7

Anderson, M. H, Ensher, J. R, Matthews, M. R, Wieman, C, & Cornell, E. (1995). Observation of Bose-Einstein Condensation in a Dilute Atomic Vapor. https://doi.org/10.1126/science.269.5221.198

MLA

Anderson, Michael H, et al. "Observation of Bose-Einstein Condensation in a Dilute Atomic Vapor." 1995. https://doi.org/10.1126/science.269.5221.198.

Chicago

Anderson, Michael H, J. R. Ensher, M. R. Matthews, Carl Wieman, and Eric Cornell. 1995. "Observation of Bose-Einstein Condensation in a Dilute Atomic Vapor.". https://doi.org/10.1126/science.269.5221.198.

Harvard

Anderson, M. H. et al. 1995, Observation of Bose-Einstein Condensation in a Dilute Atomic Vapor, Science, available at: https://doi.org/10.1126/science.269.5221.198 [Accessed 8 Aug. 2026].

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Title
Observation of Bose-Einstein Condensation in a Dilute Atomic Vapor
Author / contributors
Michael H. Anderson; J. R. Ensher; M. R. Matthews; Carl Wieman; Eric Cornell
Publisher
Science
Publication year
1995
Language
English

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