Solid-state qubits integrated on semiconductor substrates currently require at least one wire from every qubit to the control electronics, leading to a so-called wiring bottleneck for scaling. Demultiplexing via on-chip circuitry offers an effective strategy to overcome this bottleneck. In the case of gate-defined quantum dot arrays, specific static voltages need to be applied to many gates simultaneously to realize electron confinement. When a charge-locking structure is placed between the quantum device and the demultiplexer, the voltage can be maintained locally. In this study, we implement a switched-capacitor circuit for charge-locking and use it to float the plunger gate of a single quantum dot. Parallel plate capacitors, transistors,...
An integrated circuit fabricated using industry-standard 40 nm complementary metal-oxide-semiconduct...
Nanometer-size Si quantum dots (Si-QDs) with and without Ge core were prepared on thermally-grown Si...
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...
Gate-defined quantum dots have been identified as a promising platform for quantum information proce...
Electrons and holes confined in quantum dots define excellent building blocks for quantum emergence,...
International audienceQuantum computers require interfaces with classical electronics for efficient ...
The scalability of the quantum processor technology is elemental in reaching fault-tolerant quantum ...
The understanding of quantum mechanics enabled the development of technology such as transistors and...
Quantum computing has become a thriving field over the past several decades. Although many candidate...
Spin qubit in semiconductor quantum dot arrays offers a promising platform for future scalable quant...
International audienceSilicon offers the enticing opportunity to integrate hybrid quantum-classical ...
The recent implementation of single electron quantum dots (QDs) in semiconductor hetero-structures a...
The fabrication of single electron transistors (SET) with sidewall depletion gates on a silicon on i...
We investigate gate-induced quantum dots in silicon nanowire field-effect transistors fabricated usi...
Data underlying the publication: On-chip integration of Si/SiGe based quantum dots and switched-capa...
An integrated circuit fabricated using industry-standard 40 nm complementary metal-oxide-semiconduct...
Nanometer-size Si quantum dots (Si-QDs) with and without Ge core were prepared on thermally-grown Si...
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...
Gate-defined quantum dots have been identified as a promising platform for quantum information proce...
Electrons and holes confined in quantum dots define excellent building blocks for quantum emergence,...
International audienceQuantum computers require interfaces with classical electronics for efficient ...
The scalability of the quantum processor technology is elemental in reaching fault-tolerant quantum ...
The understanding of quantum mechanics enabled the development of technology such as transistors and...
Quantum computing has become a thriving field over the past several decades. Although many candidate...
Spin qubit in semiconductor quantum dot arrays offers a promising platform for future scalable quant...
International audienceSilicon offers the enticing opportunity to integrate hybrid quantum-classical ...
The recent implementation of single electron quantum dots (QDs) in semiconductor hetero-structures a...
The fabrication of single electron transistors (SET) with sidewall depletion gates on a silicon on i...
We investigate gate-induced quantum dots in silicon nanowire field-effect transistors fabricated usi...
Data underlying the publication: On-chip integration of Si/SiGe based quantum dots and switched-capa...
An integrated circuit fabricated using industry-standard 40 nm complementary metal-oxide-semiconduct...
Nanometer-size Si quantum dots (Si-QDs) with and without Ge core were prepared on thermally-grown Si...
Spin qubits in quantum dots define an attractive platform for quantum information because of their c...