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Bose polarons near quantum criticality

Quantum Gases 2020-04-16 v3 Atomic Physics Quantum Physics

Abstract

The emergence of quasiparticles in strongly interacting matter represents one of the cornerstones of modern physics. However, when different phases of matter compete near a quantum critical point, the very existence of quasiparticles comes under question. Here we create Bose polarons near quantum criticality by immersing atomic impurities in a Bose-Einstein condensate (BEC) with near-resonant interactions. Using locally-resolved radiofrequency spectroscopy, we probe the energy, spectral width, and short-range correlations of the impurities as a function of temperature. Far below the superfluid critical temperature, the impurities form well-defined quasiparticles. However, their inverse lifetime, given by their spectral width, is observed to increase linearly with temperature at the Planckian scale kBT\frac{k_B T}{\hbar}, a hallmark of quantum critical behavior. Close to the BEC critical temperature, the spectral width exceeds the binding energy of the impurities, signaling a breakdown of the quasiparticle picture.

Keywords

Cite

@article{arxiv.1904.02685,
  title  = {Bose polarons near quantum criticality},
  author = {Zoe Z. Yan and Yiqi Ni and Carsten Robens and Martin W. Zwierlein},
  journal= {arXiv preprint arXiv:1904.02685},
  year   = {2020}
}

Comments

17 pages, 14 figures

R2 v1 2026-06-23T08:29:36.292Z