Electron spin qubits in silicon, whether in quantum dots or in donor atoms, have long been considered attractive qubits for the implementation of a quantum computer because of silicon’s “semiconductor vacuum” character and its compatibility with the microelectronics industry. While donor electron spins in silicon provide extremely long coherence times and access to the nuclear spin via the hyperfine interaction, quantum dots have the complementary advantages of fast electrical operations, tunability, and scalability. Here, we present an approach to a novel hybrid double quantum dot by coupling a donor to a lithographically patterned artificial atom. Using gate-based rf reflectometry, we probe the charge stability of this double quantum-dot ...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
We define single electron spin qubits in a silicon metal-oxide-semiconductor double quantum dot syst...
Spin states of the electrons and nuclei of phosphorus donors in silicon are strong candidates for qu...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
Over the past several decades, quantum information science research has proven its importance to the...
Spin states of the electrons and nuclei of phosphorus donors in silicon are strong candidates for qu...
Donor-based spin qubits in silicon are promising candidates for solid-state quantum computation as t...
Electron spins confined to phosphorus donors in silicon are promising candidates as qubits(1) becaus...
The interaction of qubits via microwave frequency photons enables long-distance qubit-qubit coupling...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
A controllable and coherent light-matter interface is an essential element for a scalable quantum in...
We investigate multi-qubit device architectures for scalable donor-based quantum computing in silico...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
We report integrated charge sensing measurements on a Si/SiGe double quantum dot. The quantum dot is...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
We define single electron spin qubits in a silicon metal-oxide-semiconductor double quantum dot syst...
Spin states of the electrons and nuclei of phosphorus donors in silicon are strong candidates for qu...
A quantum computer utilizes the laws of quantum mechanics and performs logic operations on quantum t...
Over the past several decades, quantum information science research has proven its importance to the...
Spin states of the electrons and nuclei of phosphorus donors in silicon are strong candidates for qu...
Donor-based spin qubits in silicon are promising candidates for solid-state quantum computation as t...
Electron spins confined to phosphorus donors in silicon are promising candidates as qubits(1) becaus...
The interaction of qubits via microwave frequency photons enables long-distance qubit-qubit coupling...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
A controllable and coherent light-matter interface is an essential element for a scalable quantum in...
We investigate multi-qubit device architectures for scalable donor-based quantum computing in silico...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
We report integrated charge sensing measurements on a Si/SiGe double quantum dot. The quantum dot is...
Semiconductor quantum dots in silicon demonstrate exceptionally long spin lifetimes as qubits and ar...
We define single electron spin qubits in a silicon metal-oxide-semiconductor double quantum dot syst...
Spin states of the electrons and nuclei of phosphorus donors in silicon are strong candidates for qu...