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Entanglement and its facets in condensed matter systems
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This thesis poses a selection of recent research of the author in a common context. It starts with a selected review on research concerning the role entanglement might play at quantum phase transitions and introduces measures for entanglement used for this analysis. A selection of results from this research is given and proposed as evidence for the relevance of multipartite entanglement in this context. A constructive method for an SLOCC classification and quantification of multipartite qubit entanglement is outlined and results for convex roof extensions of the resulting measures are briefly discussed on a specific example. At the end, a transformation of antilinear expectation values into linear expectation values is presented which admits an expression of the aforementioned measures of genuine multipartite entanglement in terms of spin correlation function, hence making them experimentally accessible.
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Cited by 1 Pith paper
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Bound on efficiency of heat engine from uncertainty relation viewpoint
A quantum Stirling engine efficiency is rewritten in terms of a sum of position and momentum uncertainties, but the relation is an ad hoc reparameterization and the derivation is not sound.
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