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Determining Factors for the Accuracy of DMRG in Chemistry
Published 21 Jan 2014 in physics.chem-ph, cond-mat.str-el, physics.comp-ph, and quant-ph | (1401.5497v1)
Abstract: The Density Matrix Renormalization Group (DMRG) algorithm has been a rising star for the accurate ab initio exploration of Born-Oppenheimer potential energy surfaces in theoretical chemistry. However, owing to its iterative numerical nature, pit falls, that can affect the accuracy of DMRG energies, need to be circumvented. Here, after a brief introduction into this quantum chemical method, we discuss criteria that determine the accuracy of DMRG calculations.
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