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Correlations and pair formation in a repulsively interacting Fermi gas
A degenerate Fermi gas is rapidly quenched into the regime of strong effective repulsion near a Feshbach resonance. The spin fluctuations are monitored using speckle imaging and, contrary to several theoretical predictions, the samples remain in the paramagnetic phase for an arbitrarily large scatte...
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Published in: | Physical review letters 2012-06, Vol.108 (24), p.240404-240404, Article 240404 |
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container_end_page | 240404 |
container_issue | 24 |
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container_title | Physical review letters |
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creator | Sanner, Christian Su, Edward J Huang, Wujie Keshet, Aviv Gillen, Jonathon Ketterle, Wolfgang |
description | A degenerate Fermi gas is rapidly quenched into the regime of strong effective repulsion near a Feshbach resonance. The spin fluctuations are monitored using speckle imaging and, contrary to several theoretical predictions, the samples remain in the paramagnetic phase for an arbitrarily large scattering length. Over a wide range of interaction strengths a rapid decay into bound pairs is observed over times on the order of 10ℏ/E(F), preventing the study of equilibrium phases of strongly repulsive fermions. Our work suggests that a Fermi gas with strong short-range repulsive interactions does not undergo a ferromagnetic phase transition. |
doi_str_mv | 10.1103/physrevlett.108.240404 |
format | article |
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title | Correlations and pair formation in a repulsively interacting Fermi gas |
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