Graphene quantum dots are attractive candidates for solid-state quantum bits. In fact, the predicted weak spin-orbit and hyperfine interaction promise spin qubits with long coherence times. Graphene quantum dots have been extensively investigated with respect to their excitation spectrum, spin-filling sequence and electron-hole crossover. However, their relaxation dynamics remain largely unexplored. This is mainly due to challenges in device fabrication, in particular concerning the control of carrier confinement and the tunability of the tunnelling barriers, both crucial to experimentally investigate decoherence times. Here we report pulsed-gate transient current spectroscopy and relaxation time measurements of excited states in graphene q...
We report current hysteresis in response to applied voltage in graphene quantum dots of average diam...
This thesis describes a series of experiments which explore and the technique of charge sensing in G...
We perform time‐resolved photoluminescence experiments to study carrier relaxation in strain‐induced...
Graphene quantum dots are attractive candidates for solid-state quantum bits. In fact, the predicted...
Graphene quantum devices, such as single electron transistors and quantum dots, have been a vital fi...
Electrostatically defined quantum dots in bilayer graphene offer a promising platform for spin qubit...
Electrostatically defined quantum dots in bilayer graphene offer a promising platform for spin qubit...
We study and compare two analytic models of graphene quantum dots for calculating charge relaxation ...
The relaxation time of a single-electron spin is an important parameter for solid-state spin qubits,...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
We are pursuing a capability to perform time resolved manipulations of single spins in quantum dot c...
Graphene quantum dots (QD_s) are intensively studied as platforms for the next generation of quantum...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
We are pursuing a capability to perform time resolved manipulations of single spins in quantum dot c...
We present a theoretical study of the detection of the decay time scales for a single-level quantum ...
We report current hysteresis in response to applied voltage in graphene quantum dots of average diam...
This thesis describes a series of experiments which explore and the technique of charge sensing in G...
We perform time‐resolved photoluminescence experiments to study carrier relaxation in strain‐induced...
Graphene quantum dots are attractive candidates for solid-state quantum bits. In fact, the predicted...
Graphene quantum devices, such as single electron transistors and quantum dots, have been a vital fi...
Electrostatically defined quantum dots in bilayer graphene offer a promising platform for spin qubit...
Electrostatically defined quantum dots in bilayer graphene offer a promising platform for spin qubit...
We study and compare two analytic models of graphene quantum dots for calculating charge relaxation ...
The relaxation time of a single-electron spin is an important parameter for solid-state spin qubits,...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
We are pursuing a capability to perform time resolved manipulations of single spins in quantum dot c...
Graphene quantum dots (QD_s) are intensively studied as platforms for the next generation of quantum...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
We are pursuing a capability to perform time resolved manipulations of single spins in quantum dot c...
We present a theoretical study of the detection of the decay time scales for a single-level quantum ...
We report current hysteresis in response to applied voltage in graphene quantum dots of average diam...
This thesis describes a series of experiments which explore and the technique of charge sensing in G...
We perform time‐resolved photoluminescence experiments to study carrier relaxation in strain‐induced...