he realization of mixtures of excitons and charge carriers in van der Waals materials presents a frontier for the study of the many-body physics of strongly interacting Bose-Fermi mixtures. In order to derive an effective low-energy model for such systems, we develop an exact diagonalization approach based on a discrete variable representation that predicts the scattering and bound state properties of three charges in two-dimensional transition metal dichalcogenides. From the solution of the quantum mechanical three-body problem we thus obtain the bound state energies of excitons and trions within an effective mass model which are in excellent agreement with quantum Monte Carlo predictions. The diagonalization approach also gives access to ...
Understanding the interactions of excitons has been central to the development of technolo-gies such...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Feshbach resonances play a vital role in the success of cold atoms investigating strongly-correlated...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Excitons in two-dimensional semiconductors provide a novel platform for fundamental studies of many-...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Excitons in two-dimensional semiconductors provide a novel platform for fundamental studies of many-...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
This dissertation treats a quantum impurity problem in a semiconductor system. Quantum impurity pro...
Electron and hole excitations in semiconductors may be approximated as particles with effective mas...
Electron and hole excitations in semiconductors may be approximated as particles with effective mas...
Excitons in two-dimensional semiconductors provide a novel platform for fundamental studies of many-...
We study low-dimensional quantum systems with analytical and computational methods. Firstly, the one...
Understanding the interactions of excitons has been central to the development of technolo-gies such...
Understanding the interactions of excitons has been central to the development of technolo-gies such...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Feshbach resonances play a vital role in the success of cold atoms investigating strongly-correlated...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Excitons in two-dimensional semiconductors provide a novel platform for fundamental studies of many-...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Excitons in two-dimensional semiconductors provide a novel platform for fundamental studies of many-...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
This dissertation treats a quantum impurity problem in a semiconductor system. Quantum impurity pro...
Electron and hole excitations in semiconductors may be approximated as particles with effective mas...
Electron and hole excitations in semiconductors may be approximated as particles with effective mas...
Excitons in two-dimensional semiconductors provide a novel platform for fundamental studies of many-...
We study low-dimensional quantum systems with analytical and computational methods. Firstly, the one...
Understanding the interactions of excitons has been central to the development of technolo-gies such...
Understanding the interactions of excitons has been central to the development of technolo-gies such...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Feshbach resonances play a vital role in the success of cold atoms investigating strongly-correlated...