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Particle Accelerator Physics
Particle Accelerator Physics

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Entanglement in many body quantum systems Arnau Riera Graells

Ph125: Quantum Mechanics
Ph125: Quantum Mechanics

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... If a stone is thrown at such an angle at an initial velocity, its horizontal vx vs t graph should be constant and positive vx = vx0 = v0 cos(45◦ ). Thus, choices (A) and (E) are out. Recalling the basic kinematics equation vy = vy0 − gt, one eliminates choice (D), since that shows a parabolic time d ...
11 State-to-state rotational inelastic scattering of free radicals
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... interference effects in multi-surface dynamics, so their population and scattering distributions are strongly dependent on the final quantum state. Therefore, experimental investigation absolutely requires state-resolved detection of the final quantum states, in other words, laser detection of produ ...
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... [Bar12, Mic06, Büc07a, Bre07, Pup08, Pup09, CS10]. For precision measurements cold molecules provide an enhanced sensitivity due to longer observation times as compared to molecular beams [Chi09, DeM08]. Experiments that are proposed for ultracold molecules mostly rely on or benefit from high phase ...
Ph125: Quantum Mechanics
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Topological phases and polaron physics in ultra cold quantum gases

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... Cold and ultracold collisions occupy a strategic position at the intersection of several powerful themes of current research in chemical physics, in atomic, molecular, and optical physics, and even in condensed matter. The nature of these collisions bears critically on optical manipulation of inelas ...
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... Schrodinger time-dependent equation dictates the eventual development of its -‫ר‬function into a smeared state, or superposition of exploded and non-exploded states. But, again, since the gunpowder has, by that time, either exploded or not, QM ascribes to it two different states, and so the superpos ...
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Single photons from single ions: quantum interference and distant ion interaction Dissertation
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Paper

... densities required [9]. When Feshbach resonances were explored in bosonic systems, strong interactions were always accompanied by strong losses, preventing the study of strongly interacting condensates [7, 10, 11]. The reason is that a Feshbach resonance couples the atomic Hilbert space to a resonan ...
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Matter wave

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