In this paper, we report a fully ab initio variational Monte Carlo study of the linear and periodic chain of hydrogen atoms, a prototype system providing the simplest example of strong electronic correlation in low dimensions. In particular, we prove that numerical accuracy comparable to that of benchmark density-matrix renormalization-group calculations can be achieved by using a highly correlated Jastrow-antisymmetrized geminal power variational wave function. Furthermore, by using the so-called “modern theory of polarization” and by studying the spin-spin and dimer-dimer correlations functions, we have characterized in detail the crossover between the weakly and strongly correlated regimes of this atomic chain. Our results show that vari...
We propose to expand the solution of the Schrodinger equation for an atomic or molecular system as a...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
We discuss electronic properties and their evolution for the linear chain of H_{2} molecules in the ...
Our aim is to study the electronic wave function and the correlation energy of a low dimensional sys...
The quantum many-body problem is among the most challenging in physics. A popular approach is to red...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
Describing correlated electron systems has been a major challenge in computational condensed-matter ...
Author Institution: Max-Planck-Institut f\""{u}r, Physik komplexe Systeme (Aussenstelle Stuttgart)El...
Developing analytical and numerical tools for strongly correlated systems is a central challenge for...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
Over the past several decades, computational approaches to studying strongly-interacting systems hav...
International audienceWe design a quantum molecular dynamics method for strongly correlated electron...
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 propose to expand the solution of the Schrodinger equation for an atomic or molecular system as a...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
We discuss electronic properties and their evolution for the linear chain of H_{2} molecules in the ...
Our aim is to study the electronic wave function and the correlation energy of a low dimensional sys...
The quantum many-body problem is among the most challenging in physics. A popular approach is to red...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
Describing correlated electron systems has been a major challenge in computational condensed-matter ...
Author Institution: Max-Planck-Institut f\""{u}r, Physik komplexe Systeme (Aussenstelle Stuttgart)El...
Developing analytical and numerical tools for strongly correlated systems is a central challenge for...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
Over the past several decades, computational approaches to studying strongly-interacting systems hav...
International audienceWe design a quantum molecular dynamics method for strongly correlated electron...
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 propose to expand the solution of the Schrodinger equation for an atomic or molecular system as a...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...