International audienceWe report the dispersive readout of the spin state of a double quantum dot formed at the corner states of a silicon nanowire field-effect transistor. Two face-to-face top-gate electrodes allow us to independently tune the charge occupation of the quantum dot system down to the few-electron limit. We measure the charge stability of the double quantum dot in DC transport as well as dispersively via in situ gate-based radio frequency reflectometry, where one top-gate electrode is connected to a resonator. The latter removes the need for external charge sensors in quantum computing architectures and provides a compact way to readout the dispersive shift caused by changes in the quantum capacitance during inter-dot charge t...
We demonstrate direct measurements of the spin-orbit interaction and Landé g factors in a semiconduc...
We demonstrate direct measurements of the spin-orbit interaction and Landé g factors in a semiconduc...
Silicon quantum dot spin qubits have great potential for application in large scale quantum circuits...
International audienceWe report the dispersive readout of the spin state of a double quantum dot for...
We report the dispersive readout of the spin state of a double quantum dot formed at the corner stat...
We analyse single hole spin interactions of disorder based quantum dots in p type silicon MOSFET dev...
We analyse single hole spin interactions of disorder based quantum dots in p type silicon MOSFET dev...
Spin qubits in gate-defined silicon quantum dots are receiving increased attention thanks to their p...
We analyse single hole spin interactions of disorder based quantum dots in p type silicon MOSFET dev...
International audienceSpin qubits in gate-defined silicon quantum dots are receiving increased atten...
International audienceSpin qubits in gate-defined silicon quantum dots are receiving increased atten...
International audienceSpin qubits in gate-defined silicon quantum dots are receiving increased atten...
Quantum computation relies on accurate measurements of qubits not only for reading the output of the...
Over the past several decades, quantum information science research has proven its importance to the...
Silicon spin qubits are promising candidates for realising large scale quantum processors, benefitti...
We demonstrate direct measurements of the spin-orbit interaction and Landé g factors in a semiconduc...
We demonstrate direct measurements of the spin-orbit interaction and Landé g factors in a semiconduc...
Silicon quantum dot spin qubits have great potential for application in large scale quantum circuits...
International audienceWe report the dispersive readout of the spin state of a double quantum dot for...
We report the dispersive readout of the spin state of a double quantum dot formed at the corner stat...
We analyse single hole spin interactions of disorder based quantum dots in p type silicon MOSFET dev...
We analyse single hole spin interactions of disorder based quantum dots in p type silicon MOSFET dev...
Spin qubits in gate-defined silicon quantum dots are receiving increased attention thanks to their p...
We analyse single hole spin interactions of disorder based quantum dots in p type silicon MOSFET dev...
International audienceSpin qubits in gate-defined silicon quantum dots are receiving increased atten...
International audienceSpin qubits in gate-defined silicon quantum dots are receiving increased atten...
International audienceSpin qubits in gate-defined silicon quantum dots are receiving increased atten...
Quantum computation relies on accurate measurements of qubits not only for reading the output of the...
Over the past several decades, quantum information science research has proven its importance to the...
Silicon spin qubits are promising candidates for realising large scale quantum processors, benefitti...
We demonstrate direct measurements of the spin-orbit interaction and Landé g factors in a semiconduc...
We demonstrate direct measurements of the spin-orbit interaction and Landé g factors in a semiconduc...
Silicon quantum dot spin qubits have great potential for application in large scale quantum circuits...