In this paper the diffusion Monte Carlo method is applied to the confined hydrogen atom with different confinement geometries. This approach is validated using the much studied spherical and cylindrical confinements and then applied to cubical and squared ones, for which data are not available, as new applications of the method relevant to solid state physics. The energy eigenvalues of the ground state and one low-lying excited state are reported as a function of the characteristic confinement length
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
In this paper the diffusion Monte Carlo method is applied to the confined hydrogen atom with differe...
The diffusion Monte Carlo method with symmetry-based state selection is used to calculate the quantu...
The diffusion Monte Carlo method with symmetry-based state selection is used to calculate the quantu...
A rich literature has been produced on the quantum states of atoms and molecules confined into infin...
The problem of a particle confined in a spherical cavity is studied with the Dirac equation. A hard ...
Texto completo: acesso restrito. p. 2811-2825The hydrogen atom confined by an infinite spherical pot...
The Lagrange-mesh method is an approximate variational calculation which resembles a mesh calculatio...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
It is shown that the energy of a hydrogen-like atom confined inside a spherical cavity of radius, R,...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
A model for describing the ground and excited states of a hydrogen atom (or amolecule) confined to a...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
In this paper the diffusion Monte Carlo method is applied to the confined hydrogen atom with differe...
The diffusion Monte Carlo method with symmetry-based state selection is used to calculate the quantu...
The diffusion Monte Carlo method with symmetry-based state selection is used to calculate the quantu...
A rich literature has been produced on the quantum states of atoms and molecules confined into infin...
The problem of a particle confined in a spherical cavity is studied with the Dirac equation. A hard ...
Texto completo: acesso restrito. p. 2811-2825The hydrogen atom confined by an infinite spherical pot...
The Lagrange-mesh method is an approximate variational calculation which resembles a mesh calculatio...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
It is shown that the energy of a hydrogen-like atom confined inside a spherical cavity of radius, R,...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
A model for describing the ground and excited states of a hydrogen atom (or amolecule) confined to a...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...
The problems connected with the simulation by the diffusion quantum Monte Carlo method of atomic and...