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Temperature / State functions / Thermodynamics / Phases of matter / Bose–Einstein condensate / Optical lattice / Absolute zero / Negative temperature / Bose–Hubbard model / Physics / Chemistry / Condensed matter physics


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Document Date: 2012-11-05 20:10:40


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Munich / New York / /

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A. V. Krasavin N. V. / Multiband / /

Country

Germany / /

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low-energy ones / 1D systems / minimum energy / fermionic systems / fermionic lattice systems / given kinetic energy / kinetic energy / dark energy / kinetic energy distribution / lattice systems / energy leads / correlated quantum gas phase / mean-field interaction energy / potential energy / localized spin systems / equilibrium solution / lower and upper energy bounds / attractive gas / negative temperature systems / chemical potential / creation operator / energy bounds / lattice site / potential energy terms / final chemical potential / upper energy / fixed total energy / interaction energy / lower energy / high-energy states / trapped atomic gas / absorption imaging / low-energy states / quantum gas / maximum kinetic energy / energy dE / bounded kinetic energy / cond-mat.quant-gas / classical ideal gas / energy / recoil energy / /

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Spin / /

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Fermi / /

Organization

US Defense Advanced Research Projects Agency / /

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Daniel Garbe / Achim Rosch / Walter Hofstetter / Akos Rapp / Y. Kagan / V / Stephan Mandt / /

ProvinceOrState

U/J / New York / /

Technology

S/N / thermodynamics / condensation / spectroscopy / /

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