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Second-Order Self-Consistent-Field Density-Matrix Renormalization Group

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arxiv 1611.05972 v2 pith:ZAJBSOPY submitted 2016-11-18 physics.chem-ph cond-mat.str-elphysics.comp-phquant-ph

classification physics.chem-phcond-mat.str-elphysics.comp-phquant-ph
keywords dmrg-scfenergyconvergencedensity-matrixgroupmolecularorbitalquadratic
verification ladder T0 review T1 audit T2 compute T3 formal
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We present a matrix-product state (MPS)-based quadratically convergent density-matrix renormalization group self-consistent-field (DMRG-SCF) approach. Following a proposal by Werner and Knowles (JCP 82, 5053, (1985)), our DMRG-SCF algorithm is based on a direct minimization of an energy expression which is correct to second-order with respect to changes in the molecular orbital basis. We exploit a simultaneous optimization of the MPS wave function and molecular orbitals in order to achieve quadratic convergence. In contrast to previously reported (augmented Hessian) Newton-Raphson and super-configuration-interaction algorithms for DMRG-SCF, energy convergence beyond a quadratic scaling is possible in our ansatz. Discarding the set of redundant active-active orbital rotations, the DMRG-SCF energy converges typically within two to four cycles of the self-consistent procedure

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