Electrical readout of spin qubits requires fast and sensitive measurements, which are hindered by poor impedance matching to the device. We demonstrate perfect impedance matching in a radio-frequency readout circuit, using voltage-tunable varactors to cancel out parasitic capacitances. An optimized capacitance sensitivity of 1.6 aF/√Hz is achieved at a maximum source-drain bias of 170-μV rootmean-square and with a bandwidth of 18 MHz. Coulomb blockade in a quantum-dot is measured in both conductance and capacitance, and the two contributions are found to be proportional as expected from a quasistatic tunneling model. We benchmark our results against the requirements for single-shot qubit readout using quantum capacitance, a goal t...
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses....
Radio-frequency measurements could satisfy DiVincenzo's readout criterion in future large-scale soli...
Semiconductor quantum dots in which electrons or holes are isolated via electrostatic potentials gen...
International audienceElectrical readout of spin qubits requires fast and sensitive measurements, wh...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit readout. This can b...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit read out. This can ...
We demonstrate the use of radio-frequency (rf) resonators to measure the capacitance of nanoscale se...
The demand for a fast high-frequency read-out of high impedance devices, such as quantum dots, neces...
Quantum point contacts (QPC) are the building blocks of quantum dot qubits and semiconducting quantu...
Radio-frequency (rf) reflectometry offers a fast and sensitive method for charge sensing and spin re...
Developing fast, accurate, and scalable techniques for quantum-state readout is an active area in se...
International audienceDeveloping fast, accurate, and scalable techniques for quantum-state readout i...
We present microwave frequency measurements of the dynamic admittance of a quantum dot tunnel-couple...
We demonstrate the use of radio-frequency (rf) resonators to measure the capacitance of nano-scale s...
International audienceWe present a sensitive, tunable radio-frequency resonator designed to detect r...
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses....
Radio-frequency measurements could satisfy DiVincenzo's readout criterion in future large-scale soli...
Semiconductor quantum dots in which electrons or holes are isolated via electrostatic potentials gen...
International audienceElectrical readout of spin qubits requires fast and sensitive measurements, wh...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit readout. This can b...
Fault-tolerant spin-based quantum computers will require fast and accurate qubit read out. This can ...
We demonstrate the use of radio-frequency (rf) resonators to measure the capacitance of nanoscale se...
The demand for a fast high-frequency read-out of high impedance devices, such as quantum dots, neces...
Quantum point contacts (QPC) are the building blocks of quantum dot qubits and semiconducting quantu...
Radio-frequency (rf) reflectometry offers a fast and sensitive method for charge sensing and spin re...
Developing fast, accurate, and scalable techniques for quantum-state readout is an active area in se...
International audienceDeveloping fast, accurate, and scalable techniques for quantum-state readout i...
We present microwave frequency measurements of the dynamic admittance of a quantum dot tunnel-couple...
We demonstrate the use of radio-frequency (rf) resonators to measure the capacitance of nano-scale s...
International audienceWe present a sensitive, tunable radio-frequency resonator designed to detect r...
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses....
Radio-frequency measurements could satisfy DiVincenzo's readout criterion in future large-scale soli...
Semiconductor quantum dots in which electrons or holes are isolated via electrostatic potentials gen...