The Adaptive Shift Method in Full Configuration Interaction Quantum Monte Carlo: Development and Applications
Khaldoon Ghanem, Kai Guther, Ali Alavi

TL;DR
The paper introduces an improved adaptive shift method for FCIQMC that accelerates convergence and reduces overshooting in strongly correlated molecules without additional computational cost.
Contribution
It presents an offsetting procedure for the adaptive shift method that enhances convergence speed and stability in strongly correlated systems.
Findings
Faster convergence to FCI energy in various molecules.
Effective reduction of overshooting problem.
No additional overhead cost for the offsetting procedure.
Abstract
In a recent paper, we proposed the adaptive shift method for correcting the undersampling bias of the initiator-FCIQMC. The method allows faster convergence with the number of walkers to the FCI limit than the normal initiator method, particularly for large systems. In its application to strongly correlated molecules, however, the method is prone to overshooting the FCI energy at intermediate walker numbers, with convergence to the FCI limit from below. In this paper, we present a solution to the overshooting problem in strongly correlated molecules, as well as further accelerating convergence to the FCI energy. This is achieved by offsetting the reference energy to a value typically below the Hartree-Fock energy but above the exact energy. This offsetting procedure does not change the exactness property of the algorithm, namely convergence to the exact FCI solution in the large-walker…
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