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Construction of environment states in quantum-chemical density-matrix renormalization group calculations

机译:量子化学密度矩阵重整化群计算中环境状态的构建

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The application of the quantum-chemical density-matrix renormalization group (DMRG) algorithm is cumbersome for complex electronic structures with many active orbitals.The high computational cost is mainly due to the poor convergence of standard DMRG calculations.A factor which affects the convergence behavior of the calculations is the choice of the start-up procedure.In this start-up step matrix representations of operators have to be calculated in a guessed many-electron basis of the DMRG environment block.Different possibilities for the construction of these basis states exist,and we first compare four procedures to approximate the environment states using Slater determinants explicitly.These start-up procedures are applied to DMRG calculations on a sophisticated test system: the chromium dimer.It is found that the converged energies and the rate of convergence depend significantly on the choice of the start-up procedure.However,since already the most simple start-up procedure,which uses only the Hartree-Fock determinant,is comparatively good,Slater determinants,in general,appear not to be a good choice as approximate environment basis states for convergence acceleration.Based on extensive test calculations it is demonstrated that the computational cost can be significantly reduced if the number of total states m is successively increased.This is done in such a way that the environment states are built up stepwise from system states of previous truncated DMRG sweeps for slowly increasing m values.
机译:对于具有许多活动轨道的复杂电子结构,量子化学密度矩阵重整化组(DMRG)算法的应用繁琐,计算成本高主要是由于标准DMRG计算的收敛性较差。计算的方法是选择启动程序。在这个启动步骤中,必须在DMRG环境块的推测的多电子基础上计算算子的矩阵表示。 ,我们首先比较使用显式地使用Slater行列式来近似估算环境状态的四个过程。这些启动过程在复杂的测试系统上被用于DMRG计算:铬二聚体。发现收敛能量和收敛速度取决于在选择启动程序上有很大的帮助。但是,由于已经是最简单的启动程序,因此h仅使用Hartree-Fock行列式比较好,一般而言,Slater行列式似乎不是收敛加速的近似环境基础状态的好选择。基于大量的测试计算,结果表明计算量可以显着如果总状态数m依次增加,则减少。这是通过从以前的DMRG扫描的截断系统状态逐步建立环境状态来缓慢增加m值来完成的。

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