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Advanced Quantum Mechanics
Advanced Quantum Mechanics

Hamiltonian dynamics
Hamiltonian dynamics

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Squeezed spin states

URL - StealthSkater
URL - StealthSkater

Electronic and Optical Properties of Quantum Dots: A Tight - E-LIB
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Quantum Transport in Finite Disordered Electron Systems

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An Atomic Source of Quantum Light - Institute for Quantum Science

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On the Dynamics of Single-Electron Tunneling in Semiconductor

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1 - Philsci

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Modeling quantum fluid dynamics at nonzero temperatures

review on the quantum spin Hall effect by Macijeko, Hughes, and
review on the quantum spin Hall effect by Macijeko, Hughes, and

... term, and the effective theory of the QH state is just the topological Chern-Simons term. This topological field theory is generally valid in the presence of disorder and interactions. Until very recently, QH states were the only topological states for which the existence had been firmly established ...
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Author`s personal copy

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84, 013608 (2011)

Non-Markovian entanglement dynamics between two coupled
Non-Markovian entanglement dynamics between two coupled

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Contributions to the Quantum Optics of Multi

A Glimpse into Symplectic Geometry
A Glimpse into Symplectic Geometry

Holonomic Quantum Control with Continuous
Holonomic Quantum Control with Continuous

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Quantum group

In mathematics and theoretical physics, the term quantum group denotes various kinds of noncommutative algebra with additional structure. In general, a quantum group is some kind of Hopf algebra. There is no single, all-encompassing definition, but instead a family of broadly similar objects.The term ""quantum group"" first appeared in the theory of quantum integrable systems, which was then formalized by Vladimir Drinfeld and Michio Jimbo as a particular class of Hopf algebra. The same term is also used for other Hopf algebras that deform or are close to classical Lie groups or Lie algebras, such as a `bicrossproduct' class of quantum groups introduced by Shahn Majid a little after the work of Drinfeld and Jimbo.In Drinfeld's approach, quantum groups arise as Hopf algebras depending on an auxiliary parameter q or h, which become universal enveloping algebras of a certain Lie algebra, frequently semisimple or affine, when q = 1 or h = 0. Closely related are certain dual objects, also Hopf algebras and also called quantum groups, deforming the algebra of functions on the corresponding semisimple algebraic group or a compact Lie group.Just as groups often appear as symmetries, quantum groups act on many other mathematical objects and it has become fashionable to introduce the adjective quantum in such cases; for example there are quantum planes and quantum Grassmannians.
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