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Preparing Ground States of Quantum Many
Preparing Ground States of Quantum Many

... Ground state: eigenstate associated to lowest eigenvalue of H. Efficient simulation with a quantum computer. ...
the transcendental meditation technique and quantum physics
the transcendental meditation technique and quantum physics

Spin-to-orbital conversion of the angular momentum of light and its
Spin-to-orbital conversion of the angular momentum of light and its

... about the fate of the spin optical angular momentum in such a process. The conceptual answer provided by the STOC idea has been subsequently directly demonstrated in a later experiment performed just with liquid crystal droplets [34]. A detailed analysis of the torques and forces arising in a liquid ...
Atomic Quantum Metrology with Narrowband Entangled and Squeezed States of Light DISSERTATION
Atomic Quantum Metrology with Narrowband Entangled and Squeezed States of Light DISSERTATION

Paper - Quantum Electrodynamics in Graphene
Paper - Quantum Electrodynamics in Graphene

Three particle Hyper Entanglement: Teleportation and Quantum Key
Three particle Hyper Entanglement: Teleportation and Quantum Key

... schematic for the state preparation. The experimental procedure for the generation of the proposed state is given in Section III. The state can be utilized to teleport two qubits using two SOBAs and 16 unitary transformations as given in Section IV. Experimental schemes for realizing the C NOT gates ...
Electronic quantum optics beyond the integer quantum Hall effect
Electronic quantum optics beyond the integer quantum Hall effect

... attributed to decoherence effects because of the presence of two or more interacting channels [15]. In this paper, we wish to point out that EQO is not limited to the IQH regime. In addition to presenting the basic physics of HOM interferometry for IQH at filling factor ν = 1, we explore two differe ...
The Path Integral Approach to Quantum Mechanics
The Path Integral Approach to Quantum Mechanics

What Makes a Classical Concept Classical? Toward a
What Makes a Classical Concept Classical? Toward a

Entanglement Witnesses
Entanglement Witnesses

... (FEF interesting mathematical concept, but hard to calculate in practice) : computed example in higher dimensions, Zhao et al, J. Phys. A 2010) ...
Lecture Notes for Physics 229: Quantum Information and Computation
Lecture Notes for Physics 229: Quantum Information and Computation

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1 THE MINDFUL UNIVERSE (May 5, 2005)

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- Quantum Optics Group

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An experimental implementation of oblivious transfer in the noisy

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Nonlocality and entanglement in Generalized

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On realism and quantum mechanics

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"Loop Quantum Gravity" (Rovelli)

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Lecture, Week 1: September 27th - October 3rd, 1999 Outline 1

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1 Path Integrals and Their Application to Dissipative Quantum Systems

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Quantum digital spiral imaging

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Decoherence and open quantum systems

... to the theory of decoherence and open quantum systems. This section also provides us with the relevant equations of motion which will be solved for different quantum mechanical systems in the second part. We start our calculations with the simplest possible quantum system where entanglement already ...
Interplay of driving, nonlinearity and dissipation in nanoscale and ultracold atom systems
Interplay of driving, nonlinearity and dissipation in nanoscale and ultracold atom systems

spin squeezing and quantum entanglement in interaction
spin squeezing and quantum entanglement in interaction

Chapter 2 Challenging the Boundaries between Classical and
Chapter 2 Challenging the Boundaries between Classical and

Electron and hole wave functions in self
Electron and hole wave functions in self

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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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