The heavy Fermi polaron I: the Lithium-Cesium experiment
Abstract
We present details of an experimental platform for studying Fermi polarons in a quantum-gas mixture. The system consists of about a thousand bosonic $^{133}$Cs impurities immersed in a deeply degenerate Fermi gas ($T/T_F \sim 0.2$) of approximately $2\times 10^5$ $^6$Li atoms in a single hyperfine state, with interspecies interactions tunable via a Feshbach resonance. Using optical Raman spectroscopy without relative momentum transfer, we perform injection spectroscopy and thereby create the Fer...
Description / Details
We present details of an experimental platform for studying Fermi polarons in a quantum-gas mixture. The system consists of about a thousand bosonic Cs impurities immersed in a deeply degenerate Fermi gas () of approximately Li atoms in a single hyperfine state, with interspecies interactions tunable via a Feshbach resonance. Using optical Raman spectroscopy without relative momentum transfer, we perform injection spectroscopy and thereby create the Fermi polaron. Owing to the large mass imbalance between the two species, the setup provides access to previously unexplored regimes of Fermi polarons.
Source: arXiv:2608.27322v1 - http://arxiv.org/abs/2608.27322v1 PDF: https://arxiv.org/pdf/2608.27322v1 Original Link: http://arxiv.org/abs/2608.27322v1
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Aug 28, 2026
Quantum Computing
Quantum Physics
0