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Strongly Correlated Quantum Gas Prepared by Direct Laser Cooling

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arxiv 1906.05334 v1 pith:4CZ5ANBM submitted 2019-06-12 cond-mat.quant-gas quant-ph

Strongly Correlated Quantum Gas Prepared by Direct Laser Cooling

classification cond-mat.quant-gas quant-ph
keywords atomscoolingcorrelatedquantumalongconfineddirectlaser
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We create a one-dimensional strongly correlated quantum gas of $^{133}$Cs atoms with attractive interactions by direct laser cooling in 300~ms. After compressing and cooling the optically trapped atoms to the vibrational ground state along two tightly confined directions, the emergence of a non-Gaussian time-of-flight distribution along the third, weakly confined direction reveals that the system enters a quantum degenerate regime. We observe a strong reduction of two- and three-body spatial correlations and infer that the atoms are directly cooled into a highly correlated excited metastable state, known as a super-Tonks-Girardeau gas.

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