Ultracold atomic gases in optical lattices: mimicking condensed matter physics and beyond
Сверххолодные атомные газы в оптических решётках: моделирование физики конденсированного вещества и не только
2007-03-01
SCID: 54.1/5q8n8rhu
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Hubbard modelsoptical latticesquantum information processingquantum simulatorsultracold atomic gases
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Abstract (AI)
We review recent developments in the physics of ultracold atomic and molecular gases in optical lattices. Such systems are nearly perfect realisations of various kinds of Hubbard models, and as such may very well serve to mimic condensed matter phenomena. We show how these systems may be employed as quantum simulators to answer some challenging open questions of condensed matter, and even high energy physics. After a short presentation of the models and the methods of treatment of such systems, we discuss in detail, which challenges of condensed matter physics can be addressed with (i) disordered ultracold lattice gases, (ii) frustrated ultracold gases, (iii) spinor lattice gases, (iv) lattice gases in “artificial” magnetic fields, and, last but not least, (v) quantum information processing in lattice gases. For completeness, also some recent progress related to the above topics with trapped cold gases will be discussed. Motto: There are more things in heaven and earth, Horatio, Than are dreamt of in your philosophy Citation1
Key Findings
1
Disordered, frustrated, spinor, and artificially magnetized lattice gases provide platforms for studying distinct unresolved condensed-matter challenges.
2
Optical-lattice systems can function as quantum simulators for challenging open problems in condensed matter physics and selected high-energy physics questions.
3
Quantum information processing is identified as an important application of optical-lattice gases beyond conventional condensed-matter simulation.
4
The review summarizes models, theoretical methods, and progress involving both optical-lattice systems and related trapped cold gases.
5
Ultracold atomic and molecular gases in optical lattices closely realize Hubbard models, enabling controlled simulations of condensed-matter phenomena.
Research Object
Ultracold atomic and molecular gases in optical lattices
Research Subject
Their Hubbard-model behavior and simulation of condensed-matter and high-energy-physics phenomena, including effects of disorder, frustration, spinor degrees of freedom, artificial magnetic fields, and quantum-information processing
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2007-03-01
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