We define single electron spin qubits in a silicon metal-oxide-semiconductor double quantum dot system. By mapping the qubit resonance frequency as a function of a gate-induced electric field, the spectrum reveals an anticrossing that is consistent with an intervalley spin-orbit coupling. We fit the data from which we extract an intervalley coupling strength of 43 MHz. In addition, we observe a narrow resonance near the primary qubit resonance when we operate the device in the (1,1) charge configuration. The experimental data are consistent with a simulation involving two weakly exchanged-coupled spins with a Zeeman energy difference of 1 MHz, of the same order as the Rabi frequency. We conclude that the narrow resonance is the result of dr...
The electrical control of single spin qubits based on semiconductor quantum dots is of great interes...
Spin qubits in coupled quantum dots (QDs) are promising for future quantum information processing (Q...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
We define single electron spin qubits in a silicon metal-oxide-semiconductor double quantum dot syst...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
We theoretically model the spin-orbit interaction in silicon quantum dot devices, relevant for quant...
We theoretically model the spin-orbit interaction in silicon quantum dot devices, relevant for quant...
Silicon quantum dots are considered an excellent platform for spin qubits, partly due to their weak ...
International audienceOwing to ever increasing gate fidelities and to a potential transferability to...
International audienceOwing to ever increasing gate fidelities and to a potential transferability to...
International audienceOwing to ever increasing gate fidelities and to a potential transferability to...
Electron spin qubits in silicon, whether in quantum dots or in donor atoms, have long been considere...
The electrical control of single spin qubits based on semiconductor quantum dots is of great interes...
Silicon quantum dot spin qubits provide a promising platform for large-scale quantum computation bec...
The electrical control of single spin qubits based on semiconductor quantum dots is of great interes...
The electrical control of single spin qubits based on semiconductor quantum dots is of great interes...
Spin qubits in coupled quantum dots (QDs) are promising for future quantum information processing (Q...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
We define single electron spin qubits in a silicon metal-oxide-semiconductor double quantum dot syst...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
We theoretically model the spin-orbit interaction in silicon quantum dot devices, relevant for quant...
We theoretically model the spin-orbit interaction in silicon quantum dot devices, relevant for quant...
Silicon quantum dots are considered an excellent platform for spin qubits, partly due to their weak ...
International audienceOwing to ever increasing gate fidelities and to a potential transferability to...
International audienceOwing to ever increasing gate fidelities and to a potential transferability to...
International audienceOwing to ever increasing gate fidelities and to a potential transferability to...
Electron spin qubits in silicon, whether in quantum dots or in donor atoms, have long been considere...
The electrical control of single spin qubits based on semiconductor quantum dots is of great interes...
Silicon quantum dot spin qubits provide a promising platform for large-scale quantum computation bec...
The electrical control of single spin qubits based on semiconductor quantum dots is of great interes...
The electrical control of single spin qubits based on semiconductor quantum dots is of great interes...
Spin qubits in coupled quantum dots (QDs) are promising for future quantum information processing (Q...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...