Subnanometer-resolved local electron energy structure was measured in PbS quantum dot superlattice arrays using valence electron energy loss spectroscopy with scanning transmission electron microscopy. We found smaller values of the lowest available transition energies and an increased density of electronic states in the space between quantum dots with shorter interparticle spacing, indicating extension of carrier wave functions as a result of interparticle electronic coupling. A quantum simulation verified both trends and illustrated the wave function extension effect
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...
The electronic local density of states (LDOS) of single PbSe quantum dots (QDs) and QD molecules is ...
Though atoms and quantum dots typically contain a comparable number of electrons, the number of disc...
Quantum dots (QDs) allow for manipulation of the position and energy levels of electrons at sub-10 n...
We present a measurement technique for quantifying coupling between semiconductor quantum dots in an...
Electronically excited orbitals play a fundamental role in chemical reactivity and spectroscopy. In ...
This work is an investigation into the electronic behaviour of semiconductor quantum dots, particula...
Atomistic electronic structure calculations are performed to study the coherent inter-dot couplings ...
We present theoretical and experimental studies of the effect of the density of states of a quantum ...
The influence of interdot electronic coupling on photoluminescence (PL) spectra of self-assembled In...
Abstract: Atomistic electronic structure calculations are performed to study the coherent inter-dot ...
We show both theoretically and experimentally that scanning tunneling spectroscopy (STS) images of s...
The few-particle state of carriers confined in a quantum dot is controlled by the balance between th...
We show both theoretically and experimentally that scanning tunneling spectroscopy (STS) images of s...
We demonstrate 2-dimensional coupling of the electron states in lateral quantum dot molecules by exc...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...
The electronic local density of states (LDOS) of single PbSe quantum dots (QDs) and QD molecules is ...
Though atoms and quantum dots typically contain a comparable number of electrons, the number of disc...
Quantum dots (QDs) allow for manipulation of the position and energy levels of electrons at sub-10 n...
We present a measurement technique for quantifying coupling between semiconductor quantum dots in an...
Electronically excited orbitals play a fundamental role in chemical reactivity and spectroscopy. In ...
This work is an investigation into the electronic behaviour of semiconductor quantum dots, particula...
Atomistic electronic structure calculations are performed to study the coherent inter-dot couplings ...
We present theoretical and experimental studies of the effect of the density of states of a quantum ...
The influence of interdot electronic coupling on photoluminescence (PL) spectra of self-assembled In...
Abstract: Atomistic electronic structure calculations are performed to study the coherent inter-dot ...
We show both theoretically and experimentally that scanning tunneling spectroscopy (STS) images of s...
The few-particle state of carriers confined in a quantum dot is controlled by the balance between th...
We show both theoretically and experimentally that scanning tunneling spectroscopy (STS) images of s...
We demonstrate 2-dimensional coupling of the electron states in lateral quantum dot molecules by exc...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...
The electronic local density of states (LDOS) of single PbSe quantum dots (QDs) and QD molecules is ...
Though atoms and quantum dots typically contain a comparable number of electrons, the number of disc...