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Quantum mechanics / Phases of matter / Optical lattice / Bose–Hubbard model / Bose–Einstein condensate / Hubbard model / Electronic band structure / Coherent states / Bose–Einstein condensation / Physics / Condensed matter physics / Atomic physics


articles Quantum phase transition from a super¯uid to a Mott insulator in a gas of ultracold atoms Markus Greiner*, Olaf Mandel*, Tilman Esslinger², Theodor W. HaÈnsch* & Immanuel Bloch*
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Document Date: 2010-03-15 07:24:56


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Zurich / Munich / Cambridge / Garching / /

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Pitaevskii L. P. / Macmillan Magazines Ltd / Goldman / /

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Switzerland / Germany / /

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boson gas / lowest energy band / minimum energy difference / ultracold gas / energy bands / creation operators / kinetic energy / energy gap / ground-state energy / classical systems / lattice site / interaction energy / inner energy / excitation spectrum energy difference / atomic gas / energy difference / atomic number operator / ith lattice site / energy terms / energy / recoil energy / /

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Fermi / /

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Max-Planck-Institut fuÈr Quantenoptik / Cambridge Univ. / European Union / /

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Olaf Mandel / Markus Greiner / /

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Fisher / /

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Kinyo MS-20 Speakers / /

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Delaware / /

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laser / thermodynamics / condensation / spectroscopy / /

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www.nature.com / /

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