Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and are therefore promising candidates for quantum information processing. However, control and readout techniques for these devices have thus far employed low frequency electrons, in contrast to high speed temperature readout techniques used in other qubit architectures, and coupling between multiple quantum dot qubits has not been satisfactorily addressed.This dissertation presents the design and characterization of a semiconductor charge qubit based on double quantum dot in silicon with an integrated microwave resonator for control and readout. The 6 GHz resonator is designed to achieve strong coupling with the quantum dot qubit, allowing the us...
Extremely long coherence times, excellent single-qubit gate fidelities, and two-qubit logic have bee...
Extremely long coherence times, excellent single-qubit gate fidelities, and two-qubit logic have bee...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
An integrated circuit fabricated using industry-standard 40 nm complementary metal-oxide-semiconduct...
We present a unique design and fabrication process for a lateral, gate-confined double quantum dot i...
The understanding of quantum mechanics enabled the development of technology such as transistors and...
With the rapid progress in nanofabrication, scientists and researchers are now able to make lateral ...
Gate-defined quantum dots have been identified as a promising platform for quantum information proce...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
Solid-state quantum computers require classical electronics to control and readout individual qubits...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
Electron spin qubits in silicon, whether in quantum dots or in donor atoms, have long been considere...
Extremely long coherence times, excellent single-qubit gate fidelities, and two-qubit logic have bee...
Extremely long coherence times, excellent single-qubit gate fidelities, and two-qubit logic have bee...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
An integrated circuit fabricated using industry-standard 40 nm complementary metal-oxide-semiconduct...
We present a unique design and fabrication process for a lateral, gate-confined double quantum dot i...
The understanding of quantum mechanics enabled the development of technology such as transistors and...
With the rapid progress in nanofabrication, scientists and researchers are now able to make lateral ...
Gate-defined quantum dots have been identified as a promising platform for quantum information proce...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
Solid-state quantum computers require classical electronics to control and readout individual qubits...
International audienceFast measurements of quantum devices is important in areas such as quantum sen...
Electron spin qubits in silicon, whether in quantum dots or in donor atoms, have long been considere...
Extremely long coherence times, excellent single-qubit gate fidelities, and two-qubit logic have bee...
Extremely long coherence times, excellent single-qubit gate fidelities, and two-qubit logic have bee...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...