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Bose gas

Known as: Bose gases, Thomas-Fermi approximation, Thomas–Fermi approximation 
An ideal Bose gas is a quantum-mechanical version of a classical ideal gas. It is composed of bosons, which have an integer value of spin, and obey… Expand
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Papers overview

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Highly Cited
2014
Highly Cited
2014
Ultracold atoms could help in understanding the physics of strongly interacting many-body systems, but the creation of degenerate… Expand
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Highly Cited
2013
Highly Cited
2013
Spin–orbit coupling in Bose gases is expected to lead to new phenomena, but the thermodynamic properties are not yet fully… Expand
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Highly Cited
2012
Highly Cited
2012
How quantum many-body systems relax from an initial non-equilibrium state is one of the outstanding problems in quantum… Expand
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Highly Cited
2012
Highly Cited
2012
Two-dimensional Bose fluids—such as liquid-helium films, or confined ultracold atoms—cannot form a condensate, but become… Expand
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Highly Cited
2012
Highly Cited
2012
Using a species-selective dipole potential, we create initially localized impurities and investigate their interactions with a… Expand
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Highly Cited
2012
Highly Cited
2012
We study the large-N limit of a system of N bosons interacting with a potential of intensity 1/N. When the ground state energy is… Expand
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2011
2011
We investigate the influence of quantum fluctuations upon dipolar Bose gases by means of the Bogoliubov-de Gennes theory. Thereby… Expand
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2007
2007
The momentum- and frequency-dependent one-body correlation function of the one-dimensional interacting Bose gas (Lieb–Liniger… Expand
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Highly Cited
1999
Highly Cited
1999
We study first- and second-order coherence of trapped dilute Bose gases using appropriate correlation functions. Special… Expand
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Highly Cited
1961
Highly Cited
1961
A method and apparatus for the transfer of heat at a lower temperature to another fluid at a higher temperature, using a rotary… Expand
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