We present a theory of highly excited interacting carriers confined in a semiconductor nanostructure, incorporating Auger coupling between excited states with different number of excitations. The Coulomb matrix elements connecting exciton, biexciton, and triexciton complexes are derived and an intuitive picture of breaking neutral multiexction complexes into positively and negatively charged multiexciton complexes is given. The general approach is illustrated by analyzing the coupling of biexciton and exciton in CdSe spherical nanocrystals. The electron and hole states are computed using an atomistic sp\ub3d\u2075s 17 tight binding Hamiltonian including an effective crystal field splitting and surface passivation. For each number of electro...
Use of quantum confinement as a tool to control biexciton recombination in quantum dots is investiga...
The description of carrier dynamics in spatially confined semiconductor nanocrystals (NCs), which ha...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Theory of electronic and optical properties of exciton and biexciton complexes confined in CdSe sphe...
We present the phase diagram of free charges (electrons and holes), excitons, and biexcitons in high...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
This thesis is about the use of exciton selective ultrafast spectroscopic techniques in investigati...
CdSe/CdS colloidal nanocrystals are members of a novel class of light-emitting nanoparticles with re...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
The fast nonradiative decay of multiexcitonic states via Auger recombination is a fundamental proces...
Application of colloidal semiconductor quantum dots (QDs) in optical and optoelectronic devices is o...
Biexciton properties in semiconductor nanostructures are highly sensitive to quantum confinement, re...
The study of the photophysical properties of nanoscale materials has been a substantial research are...
Strong confinement in semiconductor quantum dots enables them to host multiple electron–hole pairs o...
Use of quantum confinement as a tool to control biexciton recombination in quantum dots is investiga...
The description of carrier dynamics in spatially confined semiconductor nanocrystals (NCs), which ha...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Theory of electronic and optical properties of exciton and biexciton complexes confined in CdSe sphe...
We present the phase diagram of free charges (electrons and holes), excitons, and biexcitons in high...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
This thesis is about the use of exciton selective ultrafast spectroscopic techniques in investigati...
CdSe/CdS colloidal nanocrystals are members of a novel class of light-emitting nanoparticles with re...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
The fast nonradiative decay of multiexcitonic states via Auger recombination is a fundamental proces...
Application of colloidal semiconductor quantum dots (QDs) in optical and optoelectronic devices is o...
Biexciton properties in semiconductor nanostructures are highly sensitive to quantum confinement, re...
The study of the photophysical properties of nanoscale materials has been a substantial research are...
Strong confinement in semiconductor quantum dots enables them to host multiple electron–hole pairs o...
Use of quantum confinement as a tool to control biexciton recombination in quantum dots is investiga...
The description of carrier dynamics in spatially confined semiconductor nanocrystals (NCs), which ha...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...