We present in detail the recently developed multiconfigurational symmetrized projector quantum Monte Carlo method for excited states of the Hubbard model. We describe the implementation of the Monte Carlo method for a multiconfigurational trial wave function. We give a detailed discussion of issues related to the symmetry of the projection procedure that validates our Monte Carlo procedure for excited states. In this context we discuss various averaging procedures for the Green function and present an analysis of the errors incurred in these procedures. We study the ground-state energy and correlation functions of the onedimensional Hubbard model at half-filling to confirm these analyses. We then study the energies and correlation functions...
International audienceNumerical results for ground state and excited state properties (energies, dou...
This thesis deals with quantum Monte Carlo simulations of correlated low dimensional electron system...
Numerical results for ground-state and excited-state properties (energies, double occupancies, and M...
We present in detail the recently developed multiconfigurational symmetrized projector quantum Monte...
We present in detail the recently developed multiconfigurational symmetrized projector quantum Monte...
We develop a multiconfigurational symmetrized-projector quantum Monte Carlo (MSPQMC) method to calcu...
We develop a multiconfigurational symmetrized-projector quantum Monte Carlo MSPQMC method to calcula...
A Quantum Monte Carlo method of calculating operator expectation values for the ground state of the ...
We have carried out Quantum Monte Carlo studies to investigate the double layer Hubbard model using ...
This thesis is concerned with the development of a Projector Quantum Monte Carlo method for non-lin...
We present an improved version of the projector quantum Monte Carlo method, which has recently been ...
The extension of a generalized Hubbard model, recently introduced by A. Montorsi and M. Rasetti, is ...
In the many particle physics the exact diagonalization (ED) is limited to small system sizes, like 4...
We present a new approach to calculate excited states with the full configuration interaction quantu...
We present a new approach to calculate excited states with the full configuration interaction quantu...
International audienceNumerical results for ground state and excited state properties (energies, dou...
This thesis deals with quantum Monte Carlo simulations of correlated low dimensional electron system...
Numerical results for ground-state and excited-state properties (energies, double occupancies, and M...
We present in detail the recently developed multiconfigurational symmetrized projector quantum Monte...
We present in detail the recently developed multiconfigurational symmetrized projector quantum Monte...
We develop a multiconfigurational symmetrized-projector quantum Monte Carlo (MSPQMC) method to calcu...
We develop a multiconfigurational symmetrized-projector quantum Monte Carlo MSPQMC method to calcula...
A Quantum Monte Carlo method of calculating operator expectation values for the ground state of the ...
We have carried out Quantum Monte Carlo studies to investigate the double layer Hubbard model using ...
This thesis is concerned with the development of a Projector Quantum Monte Carlo method for non-lin...
We present an improved version of the projector quantum Monte Carlo method, which has recently been ...
The extension of a generalized Hubbard model, recently introduced by A. Montorsi and M. Rasetti, is ...
In the many particle physics the exact diagonalization (ED) is limited to small system sizes, like 4...
We present a new approach to calculate excited states with the full configuration interaction quantu...
We present a new approach to calculate excited states with the full configuration interaction quantu...
International audienceNumerical results for ground state and excited state properties (energies, dou...
This thesis deals with quantum Monte Carlo simulations of correlated low dimensional electron system...
Numerical results for ground-state and excited-state properties (energies, double occupancies, and M...