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Entanglement in many body quantum systems Arnau Riera Graells
Entanglement in many body quantum systems Arnau Riera Graells

... La intersecció entre els camps de la Informació Quàntica i la Física de la Matèria Condensada ha estat molt fructífera en els darrers anys. Per una banda, les eines desenvolupades en el marc de la Teoria de la Informació Quàntica, com les mesures d’entrellaçament, han estat ulilitzades amb molt d’èx ...
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... within the framework of relativity (meaning based on the Dirac equation). But, the overwhelming computational cost of a relativistic correlation method precludes the routine use of them, which has made its application domain somewhat limited. It is therefore necessary not only to develop new methodo ...
Part III General Description of ELIC@CEBAF - JLab
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... The photocatalytic test involved spray-coating intelligent ink25 evenly over the surface of the film.18 The intelligent ink (royal blue in color) consisted of hydroxyl ethyl cellulose polymer (0.45 g), glycerol (3.0 g) and the redox dye resazurin (40 mg) dissolved to 30 mL in distilled water. Sample ...
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... processes themselves, but do not cover either practical algorithms for state estimation or filtering theory, which are essential for stochastic optimal control. Here, we address both topics. The necessary background on classical probability theory as well as classical filtering is provided. As in th ...
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Full-Text PDF

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... In the formation of a line shape, Stark broadening is the most computationally challenging contribution, since the main difficulty is to properly characterize the emitter environment. It involves a complex combination of atomic physics, statistical mechanics and detailed plasma physics [2]. In partic ...
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Quantum electrodynamics



In particle physics, quantum electrodynamics (QED) is the relativistic quantum field theory of electrodynamics. In essence, it describes how light and matter interact and is the first theory where full agreement between quantum mechanics and special relativity is achieved. QED mathematically describes all phenomena involving electrically charged particles interacting by means of exchange of photons and represents the quantum counterpart of classical electromagnetism giving a complete account of matter and light interaction.In technical terms, QED can be described as a perturbation theory of the electromagnetic quantum vacuum. Richard Feynman called it ""the jewel of physics"" for its extremely accurate predictions of quantities like the anomalous magnetic moment of the electron and the Lamb shift of the energy levels of hydrogen.
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