In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is able to provide a reduced basis set, made of localized polycentric orbitals, specifically designed for Quantum Monte Carlo. The decomposition follows a standard Density functional theory (DFT) calculation and is based on atomic connectivity and shell structure. The new orbitals are used to construct a compact correlated wave function of the Slater–Jastrow form which is optimized at the Variational Monte Carlo level and then used as the trial wave function for a final Diffusion Monte Carlo accurate energy calculation. We are able, in this way, to capture the basic information on the real system brought by the Kohn-Sham orbitals and use it for ...
We present a method to discretize the Kohn-Sham Hamiltonian matrix in the pseudopotential framework ...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
The Hohnberg-Kohn theorem establishes a one-to-one correspondence between the density and the extern...
The Hohnberg-Kohn theorem establishes a one-to-one correspondence between the density and the extern...
In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is ...
The Hohnberg-Kohn theorem establishes a one-to-one correspondence between the density and the extern...
In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is ...
For the first time, quantum Monte Carlo orbital optimization of multi-configuration wave functions f...
For the first time, quantum Monte Carlo orbital optimization of multi-configuration wave functions f...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
We present a method to discretize the Kohn-Sham Hamiltonian matrix in the pseudopotential framework ...
Optimized effective potential (OEP) method represents a basis for the rigorous implementation of the...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
We present a method to discretize the Kohn-Sham Hamiltonian matrix in the pseudopotential framework ...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
The Hohnberg-Kohn theorem establishes a one-to-one correspondence between the density and the extern...
The Hohnberg-Kohn theorem establishes a one-to-one correspondence between the density and the extern...
In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is ...
The Hohnberg-Kohn theorem establishes a one-to-one correspondence between the density and the extern...
In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is ...
For the first time, quantum Monte Carlo orbital optimization of multi-configuration wave functions f...
For the first time, quantum Monte Carlo orbital optimization of multi-configuration wave functions f...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
We present a method to discretize the Kohn-Sham Hamiltonian matrix in the pseudopotential framework ...
Optimized effective potential (OEP) method represents a basis for the rigorous implementation of the...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
We present a method to discretize the Kohn-Sham Hamiltonian matrix in the pseudopotential framework ...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...