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Carrier capture into a GaAs quantum well with a separate
Carrier capture into a GaAs quantum well with a separate

ppt - Quark Matter 2005
ppt - Quark Matter 2005

... We explicitly treat the mass-change of pions (e.g., due to chiralsymmetry breaking) as they pass from the hot, dense collision medium [m(p)0]) to the outside vacuum [m(p)140 MeV]. This is accomplished by solving the Klein-Gordon equation with an optical potential, the real part of which is a deep, ...
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Module 2 : Electrostatics Lecture 6 : Quantization Of Charge
Module 2 : Electrostatics Lecture 6 : Quantization Of Charge

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Full-Text PDF

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... QCD and EW forces are Yang Mills gauge theories – a local invariance (at each space-time point) to generalized phase transformations of the matter fields leads to forces mediated by spin-1 (vector) ...
Quantum Resistant Cryptography
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Fock Matrix Construction for Large Systems
Fock Matrix Construction for Large Systems

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Commun. Math. Phys. 227, 605 (2002).
Commun. Math. Phys. 227, 605 (2002).

... can also be dropped at the cost of losing the overall phase information in the system which in any case is not physical. Mathematically this means that all unitaries should be regarded as projective. In three dimensional terms, this parameterization becomes the framing of a “Wilson” loop and is esse ...
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82, 021607(R) (2010)

... atoms because of the nonzero Berry phase induced by RSOC and PZF. Here we focus on one of them: observation of the intrinsic AHE. In solid-state systems, the AHE has been observed in transport experiments for electrons (i.e., measuring charge currents or voltages). Such transport experiments are not ...
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... Vτ be well-conditioned. The gold-standard is to have Uτ and Vτ be orthonormal (i.e. σj (Uτ ) = σj (Vτ ) = 1 for j = 1, 2, . . . , k), and this is commonly enforced. We have decided to instead use interpolatory decompositions in which: 1. Uτ and Vτ each contain the k × k identity matrix as a submatri ...
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... By contrast Margenau proposed a “third-way” interpretation of quantum mechanics that treads an intermediate course, whereby the probabilities are given an objective reading, and they are understood as describing tendencies – more precisely: the tendencies of latent observables to take on different v ...
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Can the Schrödinger wave function be associated with a concrete

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Subnanometre resolution in three-dimensional magnetic resonance

... depth of 10 nm) are placed in the focus of a confocal microscope so that the NV electronic spin can be initialized by optical pumping, used as a sensor to measure nearby dark spins via magnetic dipole–dipole interactions, and read out using time and spin-state dependent fluorescence17. To image the t ...
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Quantum Information and Spacetime
Quantum Information and Spacetime

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...  String theories have supersymmetry as a necessary ingredient  Cancellation of quantum corrections between boson and fermion partners prevents mass renormalizations to Planck scale  Lightest Susy particle (LSP) stable and non-interacting: an excellent candidate for dark matter  Potential for CP ...
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... volumes of gas, at the same temperature and pressure contain the same number of particles. Moles are numbers of particles You can treat reactions as if they happen liters at a time, as long as you keep the temperature and pressure the same. 1 mole = 22.4 L @ STP ...
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... for the infinite U case (to sixth order) yields ...
Resonances, dissipation and decoherence in exotic and artificial atoms
Resonances, dissipation and decoherence in exotic and artificial atoms

... confinement in the quantum dot, while the electron-electron interaction can be approached exactly in the same way. This raises the question how the electron confinement in the dot should be modelled. The most common choice is a two-dimensional (or, in case of spherical quantum dots, three-dimensiona ...
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Relativistic quantum mechanics

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