We investigate the quantum dynamics of the quantum-dot cellular automata qubit in the presence of a quantum point contact detector by modified rate equations. It is demonstrated that the qubit information can be resolved by measuring the detector current variation. Furthermore, we show that this oscillating current and the electron occupation probabilities in states \b> and \c> decay drastically as the dephasing rate increases, clearly revealing the influence of the dephasing induced by the detector. Moreover, it is shown that the operation speed of the quantum-dot cellular automata qubit may be adjusted by varying the interdot coupling strength. (C) 2003 American Institute of Physics
We study transport and charge sensing measurements of double quantum dots (DQDs). Several proposals ...
Dephasing of quantum dots presents an intrinsic limitation on their use for quantum computing. We co...
In controlled dephasing a controlled environment causes dephasing of transport through a mesoscopic ...
We derive the generalized rate equation for the coupled quantum-dot (QD) system irradiated by a micr...
Quantum-dot Cellular Automata (QDCA) provide an interesting experimental system with which to study ...
We theoretically investigate the backaction of a sensor quantum dot with strong local Coulomb repuls...
We consider the dephasing of an one-electron state in a quantum dot due to charge fluctuations in a ...
In this paper we propose a novel measurement scheme, based on a double quantum-dot detector, for rea...
We present a theoretical study of quasi-adiabatic clocking and thermal effect in Quantum-dot Cellula...
Quantum-dot cellular automata (QCA) provides a basis for classical computation without transistors. ...
Charge detection utilizing a highly biased quantum point contact has become the most effective probe...
Quantum-dot Cellular Automata (QCA) provides a basis for classical computation without tran-sistors....
Interactions between nanoscale semiconductor structures form the basis for charge detectors in the s...
Entanglement between particle and detector is known to be inherent in the measurement process. Gurvi...
We present a theoretical study of the detection of the decay time scales for a single-level quantum ...
We study transport and charge sensing measurements of double quantum dots (DQDs). Several proposals ...
Dephasing of quantum dots presents an intrinsic limitation on their use for quantum computing. We co...
In controlled dephasing a controlled environment causes dephasing of transport through a mesoscopic ...
We derive the generalized rate equation for the coupled quantum-dot (QD) system irradiated by a micr...
Quantum-dot Cellular Automata (QDCA) provide an interesting experimental system with which to study ...
We theoretically investigate the backaction of a sensor quantum dot with strong local Coulomb repuls...
We consider the dephasing of an one-electron state in a quantum dot due to charge fluctuations in a ...
In this paper we propose a novel measurement scheme, based on a double quantum-dot detector, for rea...
We present a theoretical study of quasi-adiabatic clocking and thermal effect in Quantum-dot Cellula...
Quantum-dot cellular automata (QCA) provides a basis for classical computation without transistors. ...
Charge detection utilizing a highly biased quantum point contact has become the most effective probe...
Quantum-dot Cellular Automata (QCA) provides a basis for classical computation without tran-sistors....
Interactions between nanoscale semiconductor structures form the basis for charge detectors in the s...
Entanglement between particle and detector is known to be inherent in the measurement process. Gurvi...
We present a theoretical study of the detection of the decay time scales for a single-level quantum ...
We study transport and charge sensing measurements of double quantum dots (DQDs). Several proposals ...
Dephasing of quantum dots presents an intrinsic limitation on their use for quantum computing. We co...
In controlled dephasing a controlled environment causes dephasing of transport through a mesoscopic ...