We analyze the dynamics of a continuously observed, damped, microwave-driven solid state charge qubit, consisting of a single electron in a double well potential. The microwave field induces transitions between the qubit eigenstates, which have a profound effect on the detector output current. Useful information about the qubit dynamics, such as dephasing and relaxation rates, and the Rabi frequency, can be extracted from the detector conductance and output noise power spectrum. We also propose a technique for single-shot electron spin readout, for spin based quantum information processing, which has a number of practical advantages over existing schemes
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...
Cette thèse décrit une série de travaux réalisés dans le contexte des qubits de spins, allant de l'u...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
We study the dynamics of a charge qubit, consisting of a single electron in a double well potential ...
We describe a method by which the decoherence time of a solid-state qubit may be measured. The qubit...
We describe a method by which the decoherence time of a solid state qubit may be measured. The qubit...
We have fabricated a Josephson charge qubit by capacitively coupling a single-Cooper-pair box (SCB) ...
Magnetic-field gradients and microwave resonators are promising tools to realize a scalable quantum-...
A mechanical electroscope based on a change in the resonant frequency of a cantilever one micron in ...
To implement quantum information processing, microwave fields are often used to manipulate superconu...
A sensitive technique for the readout of the state of a qubit is based on the measurement of the con...
We present a new model for the continuous measurement of a coupled quantum dot charge qubit. We mode...
Two level systems that can be reliably controlled and measured hold promise as qubits both for metro...
We study transport and charge sensing measurements of double quantum dots (DQDs). Several proposals ...
We investigate the dynamics of a strongly driven microwave-dressed donor-bound electron spin qubit i...
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...
Cette thèse décrit une série de travaux réalisés dans le contexte des qubits de spins, allant de l'u...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
We study the dynamics of a charge qubit, consisting of a single electron in a double well potential ...
We describe a method by which the decoherence time of a solid-state qubit may be measured. The qubit...
We describe a method by which the decoherence time of a solid state qubit may be measured. The qubit...
We have fabricated a Josephson charge qubit by capacitively coupling a single-Cooper-pair box (SCB) ...
Magnetic-field gradients and microwave resonators are promising tools to realize a scalable quantum-...
A mechanical electroscope based on a change in the resonant frequency of a cantilever one micron in ...
To implement quantum information processing, microwave fields are often used to manipulate superconu...
A sensitive technique for the readout of the state of a qubit is based on the measurement of the con...
We present a new model for the continuous measurement of a coupled quantum dot charge qubit. We mode...
Two level systems that can be reliably controlled and measured hold promise as qubits both for metro...
We study transport and charge sensing measurements of double quantum dots (DQDs). Several proposals ...
We investigate the dynamics of a strongly driven microwave-dressed donor-bound electron spin qubit i...
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...
Cette thèse décrit une série de travaux réalisés dans le contexte des qubits de spins, allant de l'u...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...