We develop a systematic method of the perturbative expansion around the Gaussian effective action based on the background field method. We show, by applying the method to the quantum mechanical anharmonic oscillator problem, that even the first non-trivial correction terms greatly improve the Gaussian approximation
This paper derives the Feynman rules for the diagrammatic perturbation expansion of the effective ac...
This paper derives the Feynman rules for the diagrammatic perturbation expansion of the effective ac...
The improvement of resummation algorithms for divergent perturbative expansions in quantum field the...
We have developed a variational perturbation theory based on the Liouville-Neumann equation, which e...
We have extended the variational perturbative theory based on the back ground field method to includ...
An approximation method which combines the perturbation theory with the variational calculation is c...
It is shown that for the one-dimensional quantum anharmonic oscillator with potential $V(x)= x^2+g^2...
A new pseudoperturbative (artificial in nature) methodical proposal [15] is used to solve for Schrod...
AbstractWe present a method for extracting tunnelling amplitudes from perturbation expansions which ...
Using the post-Gaussian trial functions, we calculate the variational solutions to the quantum-mecha...
It is apparent to anyone who thinks about it that, to a large degree, the basic concepts of Newtonia...
Based on the variational result, we performed a Taylor series expansion of the free energy of an anh...
Adaptive perturbation is a new method for perturbatively computing the eigenvalues and eigenstates o...
Adaptive perturbation is a new method for perturbatively computing the eigenvalues and eigenstates o...
An alternative perturbative expansion in quantum mechanics which allows a full expression of the sca...
This paper derives the Feynman rules for the diagrammatic perturbation expansion of the effective ac...
This paper derives the Feynman rules for the diagrammatic perturbation expansion of the effective ac...
The improvement of resummation algorithms for divergent perturbative expansions in quantum field the...
We have developed a variational perturbation theory based on the Liouville-Neumann equation, which e...
We have extended the variational perturbative theory based on the back ground field method to includ...
An approximation method which combines the perturbation theory with the variational calculation is c...
It is shown that for the one-dimensional quantum anharmonic oscillator with potential $V(x)= x^2+g^2...
A new pseudoperturbative (artificial in nature) methodical proposal [15] is used to solve for Schrod...
AbstractWe present a method for extracting tunnelling amplitudes from perturbation expansions which ...
Using the post-Gaussian trial functions, we calculate the variational solutions to the quantum-mecha...
It is apparent to anyone who thinks about it that, to a large degree, the basic concepts of Newtonia...
Based on the variational result, we performed a Taylor series expansion of the free energy of an anh...
Adaptive perturbation is a new method for perturbatively computing the eigenvalues and eigenstates o...
Adaptive perturbation is a new method for perturbatively computing the eigenvalues and eigenstates o...
An alternative perturbative expansion in quantum mechanics which allows a full expression of the sca...
This paper derives the Feynman rules for the diagrammatic perturbation expansion of the effective ac...
This paper derives the Feynman rules for the diagrammatic perturbation expansion of the effective ac...
The improvement of resummation algorithms for divergent perturbative expansions in quantum field the...