We study the electronic relaxation in a quantum dot within the polaron approach by focusing on the reversible anharmonic decay of longitudinal optical LO phonons forming the polaron into longitudinalacoustic LA phonons. The coherent coupling between the LO and LA phonons is treated within a mean-field approach.We derive a temperature-dependent interlevel coupling parameter, related to the Grüneisen parameter and the thermal-expansion coefficient, which characterizes an effective decay channel for the electronic or excitonic states. Within this theory, we obtain a characteristic anharmonic decay time of 1 ns, 2–3 orders of magnitude longer than previous predictions based on the Fermi’s Golden Rule. We suggest that coherent relax...
We study how polaronic states form as a function of time due to strong electron-phonon coupling, sta...
peer reviewedWe study coherent transport through a double quantum dot. Its two electronic leads indu...
Central to the present work is the interaction between a semiconductor quantum dot (QD) exciton and...
This thesis presents a theoretical study of electron-phonon interaction in InAs/GaAs quantum dots, w...
Three distinct channels for the decay of polarons in InAs quantum dots are identified using energy a...
The problem of an electron interacting with longitudinal-optical (LO) phonons is investigated in an ...
Polaron decay in n-type InAs quantum dots has been investigated using energy dependent, mid-infrared...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
When an electron–hole pair is optically excited in a semiconductor quantum dot, the host crystal lat...
We present a semianalytic and asymptotically exact solution to the problem of phonon-induced decoher...
Polaron relaxation in n-type InAs quantum dots has been studied by picosecond time-resolved pump-pro...
Controlling the relaxation dynamics of excitons is key to improving the efficiencies of semiconducto...
Semiconductor quantum dots operated dynamically are the basis of many quantum technologies such as q...
We report on the magneto-optical evidence and theoretical modelling of polaron effects in self-asse...
A method to study carrier relaxation dynamics based on the artificial control of nonradiative losses...
We study how polaronic states form as a function of time due to strong electron-phonon coupling, sta...
peer reviewedWe study coherent transport through a double quantum dot. Its two electronic leads indu...
Central to the present work is the interaction between a semiconductor quantum dot (QD) exciton and...
This thesis presents a theoretical study of electron-phonon interaction in InAs/GaAs quantum dots, w...
Three distinct channels for the decay of polarons in InAs quantum dots are identified using energy a...
The problem of an electron interacting with longitudinal-optical (LO) phonons is investigated in an ...
Polaron decay in n-type InAs quantum dots has been investigated using energy dependent, mid-infrared...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
When an electron–hole pair is optically excited in a semiconductor quantum dot, the host crystal lat...
We present a semianalytic and asymptotically exact solution to the problem of phonon-induced decoher...
Polaron relaxation in n-type InAs quantum dots has been studied by picosecond time-resolved pump-pro...
Controlling the relaxation dynamics of excitons is key to improving the efficiencies of semiconducto...
Semiconductor quantum dots operated dynamically are the basis of many quantum technologies such as q...
We report on the magneto-optical evidence and theoretical modelling of polaron effects in self-asse...
A method to study carrier relaxation dynamics based on the artificial control of nonradiative losses...
We study how polaronic states form as a function of time due to strong electron-phonon coupling, sta...
peer reviewedWe study coherent transport through a double quantum dot. Its two electronic leads indu...
Central to the present work is the interaction between a semiconductor quantum dot (QD) exciton and...