We demonstrated coherent control of a quantum two-level system based on two-electron spin states in a double quantum dot, allowing state preparation, coherent manipulation, and projective readout. These techniques are based on rapid electrical control of the exchange interaction. Separating and later recombining a singlet spin state provided a measurement of the spin dephasing time, T2*, of approximately 10 nanoseconds, limited by hyperfine interactions with the gallium arsenide host nuclei. Rabi oscillations of two-electron spin states were demonstrated, and spin-echo pulse sequences were used to suppress hyperfine-induced dephasing. Using these quantum control techniques, a coherence time for two-electron spin states exceeding 1 microseco...
An electron does not only have an electric charge, but also a small magnetic moment, called spin. In...
An electron does not only have an electric charge, but also a small magnetic moment, called spin. In...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
We use gate voltage control of the exchange interaction to prepare, manipulate, and measure two-elec...
Rapid coherent control of electron spin states is required for implementation of a spin-based quantu...
In this thesis we consider fundamental problems in relation to the development of a quantum computer...
Electron spin qubits confined in GaAs quantum dots are among the most established and well understoo...
xvii, 110 p. : ill. (some col.)Electron spin states in semiconductors feature long coherence lifetim...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
We demonstrate high-fidelity reversible transfer of quantum information from the polarization of pho...
We have studied theoretically the possibility of ultra-fast manipulation of a single electron spin i...
For spin-based quantum computation in semiconductors, dephasing of electron spins by a fluctuating b...
An electron does not only have an electric charge, but also a small magnetic moment, called spin. In...
An electron does not only have an electric charge, but also a small magnetic moment, called spin. In...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
We use gate voltage control of the exchange interaction to prepare, manipulate, and measure two-elec...
Rapid coherent control of electron spin states is required for implementation of a spin-based quantu...
In this thesis we consider fundamental problems in relation to the development of a quantum computer...
Electron spin qubits confined in GaAs quantum dots are among the most established and well understoo...
xvii, 110 p. : ill. (some col.)Electron spin states in semiconductors feature long coherence lifetim...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
We demonstrate high-fidelity reversible transfer of quantum information from the polarization of pho...
We have studied theoretically the possibility of ultra-fast manipulation of a single electron spin i...
For spin-based quantum computation in semiconductors, dephasing of electron spins by a fluctuating b...
An electron does not only have an electric charge, but also a small magnetic moment, called spin. In...
An electron does not only have an electric charge, but also a small magnetic moment, called spin. In...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...