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Observable Measure of Quantum Coherence in Finite
Observable Measure of Quantum Coherence in Finite

... P K for any possible state preparation, i.e., Iðρ; KÞ ≤ i pi Vðjϕi i; KÞ; ∀fϕi g. A numerical example is presented in Fig. 1. Consistently, given a n-partite system A1;2;…n , the local K Ai coherence is given by IðρA1 ;A2 ;…;An ; IAi ;A2 ;…;Ai−1 ⊗ K Ai ⊗ IAiþ1 ;Aiþ2 ;…;An Þ [30]. It is noticeable th ...
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The capacity of the noisy quantum channel

... The ‘quantum’ in quantum mechanics means ‘how much’ — in quantum mechanics, classically continuous variables such as energy, angular momentum and charge come in discrete units called quanta. This discrete character of quantum-mechanical systems such as photons, atoms, and spins allows them to regist ...
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measurement and interpretation of electrokinetic phenomena

... potential, is given the symbol ψi. All potentials are defined with respect to the potential in bulk solution. Concerning the ions in the EDL, some further comments can be of interest. Usually, a distinction is made between indifferent and specifically adsorbing ions. Indifferent ions adsorb through ...
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... (the minus sign here is associated with the net spin angular momentum of the pair of particles which we take to be 0; a plus sign would be angular momentum 1; the pure states are mixtures of total angular momentum 0 and 1). Each detector can measure the individual spin of the corresponding outgoing ...
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Condensed Matter Physics as a Laboratory for Gravitation and

... (iii) along the  direction, which implies the addition or removal of a wedge of material, leads to a disclination. (iv) a combination of both (i) and (iii) it produces a dispiration. It is clear then, that the core of such line defects are associated to geometric singularities. Here we come close t ...
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... Directions: Unscramble the words in parentheses to fill in this section summary. (1)____________________ (tramet) is anything that takes up space and has mass. The four states of matter are (2)____________________ (dlois), (3)____________________ (quildi), (4)____________________ (sga), and (5)_____ ...
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Nonlinear Phase Dynamics in a Driven Bosonic Josephson Junction
Nonlinear Phase Dynamics in a Driven Bosonic Josephson Junction

... horizontal L^ y driving (Fig. 4). These classical effects are mirrored in the evolution of the quantum Husimi function, thereby affecting the many-body fringe-visibility dynamics, leading to the protection of coherence by Vv ðtÞ driving for ’ ¼  coherent preparation, and to its destruction by Vh ðt ...
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... Inertia is the resistance an object has to a change in its state of motion. Galileo, the premier scientist of the seventeenth century, developed the concept of inertia. Galileo reasoned that moving objects eventually stop because of a force called friction. Isaac Newton built on Galileo's thoughts a ...
CHARGED PARTICLES - The Virtual Physics Laboratory
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... modern physics curriculum. Some of the animations and virtual experiments go beyond what is required at school, but are included to stretch the more able pupils. The Virtual Physical Laboratory is endorsed by The National Physical Laboratory, The Institute of Physics and Cambridge International Exam ...
New Journal of Physics - Physik Uni
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Theoretical and experimental justification for the Schrödinger equation

The theoretical and experimental justification for the Schrödinger equation motivates the discovery of the Schrödinger equation, the equation that describes the dynamics of nonrelativistic particles. The motivation uses photons, which are relativistic particles with dynamics determined by Maxwell's equations, as an analogue for all types of particles.This article is at a postgraduate level. For a more general introduction to the topic see Introduction to quantum mechanics.
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