Two promising architectures for solid-state quantum information processing are based on electron spins electrostatically confined in semiconductor quantum dots and the collective electrodynamic modes of superconducting circuits. Superconducting electrodynamic qubits involve macroscopic numbers of electrons and offer the advantage of larger coupling, whereas semiconductor spin qubits involve individual electrons trapped in microscopic volumes but are more difficult to link. We combined beneficial aspects of both platforms in the Andreev spin qubit: the spin degree of freedom of an electronic quasiparticle trapped in the supercurrent-carrying Andreev levels of a Josephson semiconductor nanowire. We performed coherent spin manipulation by comb...
Rapid coherent control of electron spin states is required for implementation of a spin-based quantu...
The NATO Advanced Study Institute "Manipulating Quantum Coherence in Solid State Systems", in Cluj-N...
Abstract: Quantum control of solid-state spin qubits typically involves pulses in the microwave doma...
Motion of electrons can influence their spins through a fundamental effect called spin–orbit interac...
Single electron spin in a semiconductor quantum dot (QD) and single photon wavepacket propagating in...
We propose and theoretically investigate superconducting spin qubits. Superconducting spin qubit con...
xvii, 110 p. : ill. (some col.)Electron spin states in semiconductors feature long coherence lifetim...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
We demonstrate high-fidelity reversible transfer of quantum information from the polarization of pho...
Supplementary Materials at the end of the fileInternational audienceCoherent control of quantum stat...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
Recent advances of semiconductor device miniaturization strongly necessitate to take into account th...
We use gate voltage control of the exchange interaction to prepare, manipulate, and measure two-elec...
Single photons and single electrons can be confined spatially in a solid-state device by using a mil...
Quantum bits (qubits) are the basic building blocks of any quantum computer. Superconducting qubits ...
Rapid coherent control of electron spin states is required for implementation of a spin-based quantu...
The NATO Advanced Study Institute "Manipulating Quantum Coherence in Solid State Systems", in Cluj-N...
Abstract: Quantum control of solid-state spin qubits typically involves pulses in the microwave doma...
Motion of electrons can influence their spins through a fundamental effect called spin–orbit interac...
Single electron spin in a semiconductor quantum dot (QD) and single photon wavepacket propagating in...
We propose and theoretically investigate superconducting spin qubits. Superconducting spin qubit con...
xvii, 110 p. : ill. (some col.)Electron spin states in semiconductors feature long coherence lifetim...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
We demonstrate high-fidelity reversible transfer of quantum information from the polarization of pho...
Supplementary Materials at the end of the fileInternational audienceCoherent control of quantum stat...
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in ...
Recent advances of semiconductor device miniaturization strongly necessitate to take into account th...
We use gate voltage control of the exchange interaction to prepare, manipulate, and measure two-elec...
Single photons and single electrons can be confined spatially in a solid-state device by using a mil...
Quantum bits (qubits) are the basic building blocks of any quantum computer. Superconducting qubits ...
Rapid coherent control of electron spin states is required for implementation of a spin-based quantu...
The NATO Advanced Study Institute "Manipulating Quantum Coherence in Solid State Systems", in Cluj-N...
Abstract: Quantum control of solid-state spin qubits typically involves pulses in the microwave doma...