Our general interest is in self-consistent-field (scf) theories of disordered fermions. They generate physically relevant subensembles ("scf ensembles") within a given Altland-Zirnbauer class. We are motivated to investigate such ensembles (i) by the possibility to discover new fixed points due to (long-range) interactions; (ii) by analytical scf theories that rely on partial self-consistency approximations awaiting a numerical validation; and (iii) by the overall importance of scf theories for the understanding of complex interaction-mediated phenomena in terms of effective single-particle pictures. In this paper we present an efficient, parallelized implementation solving scf problems with spatially local fields by applying a kernel-polyn...
We numerically investigate critically delocalized wave functions in models of two-dimensional Dirac ...
We suggest a variant of the nonlinear σ model for the description of disordered superconductors. The...
Mesoscopic fluctuations of the local density of states encode multifractal correlations in disordere...
Our general interest is in self-consistent-field (scf) theories of disordered fermions. They generat...
We present an embedding scheme for the locally self-consistent method to study disordered electron s...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
We perform an analytical and numerical study of a superconducting instability in quasi-one-dimension...
Thesis (Ph.D.)--University of Washington, 2018This thesis concerns the interplay of quantum mechanic...
In this thesis we consider a variational wave function approach as a possible route to describe the...
Disorder is ubiquitous in condensed matter systems, but a thorough understanding of these systems is...
We use numerical simulation to study ultracold, quantum degenerate, atomic gases. In the first part ...
We investigate the properties of the superfluid phase in the three-dimensional disordered Bose-Hubba...
We consider the attractive Hubbard model with on-site disorder as a prototype of a disordered superc...
Recent experiments have shown that the superconducting energy gap in some cuprates is spatially inho...
We numerically investigate critically delocalized wave functions in models of two-dimensional Dirac ...
We suggest a variant of the nonlinear σ model for the description of disordered superconductors. The...
Mesoscopic fluctuations of the local density of states encode multifractal correlations in disordere...
Our general interest is in self-consistent-field (scf) theories of disordered fermions. They generat...
We present an embedding scheme for the locally self-consistent method to study disordered electron s...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
We perform an analytical and numerical study of a superconducting instability in quasi-one-dimension...
Thesis (Ph.D.)--University of Washington, 2018This thesis concerns the interplay of quantum mechanic...
In this thesis we consider a variational wave function approach as a possible route to describe the...
Disorder is ubiquitous in condensed matter systems, but a thorough understanding of these systems is...
We use numerical simulation to study ultracold, quantum degenerate, atomic gases. In the first part ...
We investigate the properties of the superfluid phase in the three-dimensional disordered Bose-Hubba...
We consider the attractive Hubbard model with on-site disorder as a prototype of a disordered superc...
Recent experiments have shown that the superconducting energy gap in some cuprates is spatially inho...
We numerically investigate critically delocalized wave functions in models of two-dimensional Dirac ...
We suggest a variant of the nonlinear σ model for the description of disordered superconductors. The...
Mesoscopic fluctuations of the local density of states encode multifractal correlations in disordere...