Bogoliubov phonons in a Bose-Einstein condensate from the one-loop perturbative renormalization group

Wilson’s renormalization-group approach to the weakly-interacting single-component Bose gas is discussed within the symmetry-broken, condensate phase. Extending upon the work by Bijlsma and Stoof, wave-function renormalization of the temporal derivative contributions to the effective action is inclu...

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Veröffentlicht in:SciPost physics core 2024-09, Vol.7 (3), p.066, Article 066
Hauptverfasser: Rasch, Niklas, Mikheev, Aleksandr, Gasenzer, Thomas
Format: Artikel
Sprache:eng
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Zusammenfassung:Wilson’s renormalization-group approach to the weakly-interacting single-component Bose gas is discussed within the symmetry-broken, condensate phase. Extending upon the work by Bijlsma and Stoof, wave-function renormalization of the temporal derivative contributions to the effective action is included in order to capture sound-like quasiparticle excitations with wave lengths larger than the healing-length scale. By means of a suitable rescaling scheme we achieve convergence of the coupling flows, which serve as a means to determine the condensate depletion in accordance with Bogoliubov theory, as well as the interaction-induced shift of the critical temperature.
ISSN:2666-9366
2666-9366
DOI:10.21468/SciPostPhysCore.7.3.066