Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses. In circuit QED with semiconductor quantum-dot-based qubits, increasing the resonator impedance is desirable as it enhances the coupling to the typically small charge dipole moment of these qubits. However, the gate electrodes necessary to form quantum dots in the vicinity of a resonator inadvertently lead to a parasitic port through which microwave photons can leak, thereby reducing the quality factor of the resonator. This is particularly the case for high-impedance resonators, as the ratio of their total capacitance over the parasitic port capacitance is smaller, leading to larger microwave leakage than for 50-ω resonators. Here, we introd...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instr...
Quantum point contacts (QPC) are the building blocks of quantum dot qubits and semiconducting quantu...
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses....
Quantum transducers between microwave and optical photons are essential for long-distance quantum ne...
The demand for a fast high-frequency read-out of high impedance devices, such as quantum dots, neces...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
Electrical readout of spin qubits requires fast and sensitive measurements, which are hindered by po...
We report on the realization of a bonded-bridge on-chip superconducting coil and its use in impedanc...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
We present microwave frequency measurements of the dynamic admittance of a quantum dot tunnel-couple...
International audienceElectrical readout of spin qubits requires fast and sensitive measurements, wh...
Semiconductor quantum dots in which electrons or holes are isolated via electrostatic potentials gen...
We present superconducting microwave-frequency resonators based on NbTiN nanowires. The small cross ...
The strong coupling limit of cavity quantum electrodynamics (QED) implies the capability of a matter...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instr...
Quantum point contacts (QPC) are the building blocks of quantum dot qubits and semiconducting quantu...
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses....
Quantum transducers between microwave and optical photons are essential for long-distance quantum ne...
The demand for a fast high-frequency read-out of high impedance devices, such as quantum dots, neces...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
Electrical readout of spin qubits requires fast and sensitive measurements, which are hindered by po...
We report on the realization of a bonded-bridge on-chip superconducting coil and its use in impedanc...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
We present microwave frequency measurements of the dynamic admittance of a quantum dot tunnel-couple...
International audienceElectrical readout of spin qubits requires fast and sensitive measurements, wh...
Semiconductor quantum dots in which electrons or holes are isolated via electrostatic potentials gen...
We present superconducting microwave-frequency resonators based on NbTiN nanowires. The small cross ...
The strong coupling limit of cavity quantum electrodynamics (QED) implies the capability of a matter...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instr...
Quantum point contacts (QPC) are the building blocks of quantum dot qubits and semiconducting quantu...