The one-body reduced density matrix gamma plays a fundamental role in describing and predicting quantum features of bosonic systems, such as Bose-Einstein condensation. The recently proposed reduced density matrix functional theory for bosonic ground states establishes the existence of a universal functional F[gamma] that recovers quantum correlations exactly. Based on a decomposition of gamma, we have developed a method to design reliable approximations for such universal functionals: Our results suggest that for translational invariant systems the constrained search approach of functional theories can be transformed into an unconstrained problem through a parametrization of a Euclidian space. This simplification of the search approach all...
We develop a novel data-driven approach to the inverse problem of classical statistical mechanics: g...
Machine learning methods are applied to finding the Green's function of the Anderson impurity model,...
We benchmark the ground state energies and the density profiles of atomic repulsive Fermi gases in o...
The one-body reduced density matrix gamma plays a fundamental role in describing and predicting quan...
Machine learning (ML) is an increasingly popular method to discover the structure and information be...
Motivated by the Penrose-Onsager criterion for Bose-Einstein condensation we propose a functional th...
This thesis illustrates the use of machine learning algorithms and exact numerical methods to study ...
Strong electronic correlations are at the heart of many interesting phenomena. For the theoretical d...
We propose a systematic procedure for the approximation of density functionals in density functional...
The constrained-search formulation of Levy and Lieb provides a concrete mapping from N-representable...
Solving Schrodinger's equation is extremely important to determine the quantum mechanical properties...
We address the degree to which machine learning (ML) can be used to accurately and transferably pred...
Density functional theory underlies the most successful and widely used numerical methods for electr...
The main objective of this thesis is to examine how the full configuration interaction quantum Monte...
We extend the idea of the constrained-search variational method for the construction of wave-functio...
We develop a novel data-driven approach to the inverse problem of classical statistical mechanics: g...
Machine learning methods are applied to finding the Green's function of the Anderson impurity model,...
We benchmark the ground state energies and the density profiles of atomic repulsive Fermi gases in o...
The one-body reduced density matrix gamma plays a fundamental role in describing and predicting quan...
Machine learning (ML) is an increasingly popular method to discover the structure and information be...
Motivated by the Penrose-Onsager criterion for Bose-Einstein condensation we propose a functional th...
This thesis illustrates the use of machine learning algorithms and exact numerical methods to study ...
Strong electronic correlations are at the heart of many interesting phenomena. For the theoretical d...
We propose a systematic procedure for the approximation of density functionals in density functional...
The constrained-search formulation of Levy and Lieb provides a concrete mapping from N-representable...
Solving Schrodinger's equation is extremely important to determine the quantum mechanical properties...
We address the degree to which machine learning (ML) can be used to accurately and transferably pred...
Density functional theory underlies the most successful and widely used numerical methods for electr...
The main objective of this thesis is to examine how the full configuration interaction quantum Monte...
We extend the idea of the constrained-search variational method for the construction of wave-functio...
We develop a novel data-driven approach to the inverse problem of classical statistical mechanics: g...
Machine learning methods are applied to finding the Green's function of the Anderson impurity model,...
We benchmark the ground state energies and the density profiles of atomic repulsive Fermi gases in o...