We report the observation of a spin-flip process in a quantum dot whereby a dark exciton with total angular momentum L = 2 becomes a bright exciton with L = 1. The spin-flip process is revealed in the decay dynamics following nongeminate excitation. We are able to control the spin-flip rate by more than an order of magnitude simply with a dc voltage. The spin-flip mechanism involves a spin exchange with the Fermi sea in the back contact of our device and corresponds to the high temperature Kondo regime. We use the Anderson Hamiltonian to calculate a spin-flip rate, and we find excellent agreement with the experimental results
The spin of a single electron in an electrically defined quantum dot in a two-dimensional electron g...
We propose and demonstrate the sequential initialization, optical control, and readout of a single s...
We investigate mesoscopic spin transport through a quantum dot (QD) responded by a rotating and an o...
We report the observation of a spin-flip process in a quantum dot whereby a dark exciton with total ...
We report on a spin-flip process in a charge tunable quantum dot in which a non-radiative dark excit...
We provide an alternative means of electric field control for spin manipulation in the abs...
We demonstrate high-fidelity reversible transfer of quantum information from the polarization of pho...
Measurements and calculations previously reported for a lateral quantum dot at magnetic fields close...
A single spin confined to a semiconductor quantum dot is a system of significant interest for quantu...
We present time-resolved measurements of spin-flip photon-assisted tunneling and spin-flip relaxatio...
Spin decoherence and spin flips crucially affect the tunneling transport of spin-polarized electrons...
We study the spin-flip process from the first excited state to the ground state due to the spin-phon...
We analyzed the photoluminescence intermittency generated by a single paramagnetic spin localized in...
Dynamics of two quantum dots coupled to electrodes with spin bias is investigated theoretically by m...
In this thesis, the spin and charge degree of freedom of electrons in semiconductor lateral and vert...
The spin of a single electron in an electrically defined quantum dot in a two-dimensional electron g...
We propose and demonstrate the sequential initialization, optical control, and readout of a single s...
We investigate mesoscopic spin transport through a quantum dot (QD) responded by a rotating and an o...
We report the observation of a spin-flip process in a quantum dot whereby a dark exciton with total ...
We report on a spin-flip process in a charge tunable quantum dot in which a non-radiative dark excit...
We provide an alternative means of electric field control for spin manipulation in the abs...
We demonstrate high-fidelity reversible transfer of quantum information from the polarization of pho...
Measurements and calculations previously reported for a lateral quantum dot at magnetic fields close...
A single spin confined to a semiconductor quantum dot is a system of significant interest for quantu...
We present time-resolved measurements of spin-flip photon-assisted tunneling and spin-flip relaxatio...
Spin decoherence and spin flips crucially affect the tunneling transport of spin-polarized electrons...
We study the spin-flip process from the first excited state to the ground state due to the spin-phon...
We analyzed the photoluminescence intermittency generated by a single paramagnetic spin localized in...
Dynamics of two quantum dots coupled to electrodes with spin bias is investigated theoretically by m...
In this thesis, the spin and charge degree of freedom of electrons in semiconductor lateral and vert...
The spin of a single electron in an electrically defined quantum dot in a two-dimensional electron g...
We propose and demonstrate the sequential initialization, optical control, and readout of a single s...
We investigate mesoscopic spin transport through a quantum dot (QD) responded by a rotating and an o...