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Titlebook: Strongly Correlated Systems; Numerical Methods Adolfo Avella,Ferdinando Mancini Book 20131st edition Springer-Verlag Berlin Heidelberg 2013

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,Variational Monte Carlo and Markov Chains for Computational Physics,ique will be presented. Particular emphasis will be devoted to the apparent mistery of Monte Carlo techniques that allows us to sample a correlated many electron wave function defined in an Hilbert space that is exponentially large with the number . of electrons, in an affordable computational time,
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Diagrammatic Monte Carlo and Worm Algorithm Techniques, unbiased sampling of well defined configuration spaces when the only source of errors is of statistical origin due to finite sampling time, no matter whether configuration parameters involve discrete, as in the Ising model,or continuous, as in Feynman diagramsor lattice path integrals, variables. W
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The Time-Dependent Density Matrix Renormalization Group,ependent Schrödinger equation, in both, real, and imaginary time. We illustrate these ideas with different applications such as transport problems in nano-structures, quantum quenches, and the calculation of time-dependent correlations functions.
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