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QCD meets gravity and inertia
QCD meets gravity and inertia

5 Bose-Einstein condensate (BEC)
5 Bose-Einstein condensate (BEC)

... or the demon- stration of the Einstein-Podolsky-Rosen (EPR) paradox. These applications rely on techniques to manipulate and detect coherences of quantum fields, the quadratures. Whereas in optics coherent homodyne detection of quadratures is a standard technique, for massive particles a correspondin ...
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A short Introduction to Feynman Diagrams

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Bethe-Salpeter Equation with Spin

... • Where G is the two-particle Green’s function and all the fields are in the Heisenberg representation. These are the fully dressed fields with their self-interactions. The fields ‘a’ and/or ‘b’ can be spin-1/2, spin-0 or spin-1. • The original derivation (done by both Bethe & Salpeter and Schwinge ...
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... Y1, …, Yj-1 constitute a “hidden variable” which we can condition on to leave X,Yj nearly decoupled. Trace norm bound follows from Pinsker’s inequality. ...
Entanglement measure for rank-2 mixed states
Entanglement measure for rank-2 mixed states

Quantum Mechanics Booklet
Quantum Mechanics Booklet

... with the universe.” He believed that everything in nature is determined and that laws can be found to explain everything that happens in the world and that these laws can be used to make predictions about future events. However, advances in quantum mechanics have shown that things do not always beha ...
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Chapter 7 - Gordon State College

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Recent Progress in Ultracold Atoms

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Supplement on Lagrangian, Hamiltonian Mechanics

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Homework 3 - barnes report

... Homework 3 Problem 1 In the ground state of the harmonic oscillator, what is the probability (correct to three significant digits) of finding the particle outside the classically allowed region? (Hint: what are the minimum and maximum values of the coordinates of the respective classical oscillator ...
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5.2 Functions and Dirac notation
5.2 Functions and Dirac notation

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Symmetry in quantum mechanics

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