File:Mott-Insulator Transition in a Two-Dimensional Atomic Bose Gas.jpg

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English: Time-of-flight images of a two-dimensional Bose gas. For shallow lattices, the pronounced diffraction peaks indicate that the gas is in a superfluid phase. Increasing the lattice depth leads to stronger interactions and eventually results in the formation of a Mott insulator.
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Source Cropped from http://physics.nist.gov/TechAct.2007/Div842/div842.html (also appears in [Phys. Rev. Lett. 98, 080404 (2007), DOI:10.1103/PhysRevLett.98.080404])
Author Ian B. Spielman, William D. Phillips, James V. Porto

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This work is in the public domain in the United States because it is a work prepared by an officer or employee of the United States Government as part of that person’s official duties under the terms of Title 17, Chapter 1, Section 105 of the US Code. Note: This only applies to original works of the Federal Government and not to the work of any individual U.S. state, territory, commonwealth, county, municipality, or any other subdivision. This template also does not apply to postage stamp designs published by the United States Postal Service since 1978. (See § 313.6(C)(1) of Compendium of U.S. Copyright Office Practices). It also does not apply to certain US coins; see The US Mint Terms of Use.

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current13:53, 19 June 2013Thumbnail for version as of 13:53, 19 June 2013600 × 238 (33 KB)Hweimer (talk | contribs)User created page with UploadWizard

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