Ternary quantum information processing in superconducting devices poses a promising alternative to its more popular binary counterpart through larger, more connected computational spaces and proposed advantages in quantum simulation and error correction. Although generally operated as qubits, transmons have readily addressable higher levels, making them natural candidates for operation as quantum three-level systems (qutrits). Recent works in transmon devices have realized high fidelity single qutrit operation. Nonetheless, effectively engineering a high-fidelity two-qutrit entanglement remains a central challenge for realizing qutrit processing in a transmon device. In this work, we apply the differential AC Stark shift to implement a flex...
The quantum non-demolition (QND) measurement process begins by entangling the system to be measured,...
Gate-based quantum computers typically encode and process information in two-dimensional units calle...
All-microwave control of fixed-frequency superconducting quantum computing circuits is advantageous ...
Superconducting quantum circuits are a leading technology in the quest toward building a quantum com...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
We implemented all-microwave two qubit entanglement scheme via Stark shift-induced controlled phase ...
Quantum computation requires the precise control of the evolution of a quantum system, typically thr...
Gate-based quantum computation has been extensively investigated using quantum circuits based on qub...
We propose and analyze two types of microwave-activated gates between a fluxonium and a transmon qub...
<p>While the on-chip processing power in circuit QED devices is growing rapidly, an open challenge i...
We theoretically present an effective method to realize NiSWAP, N(sqrt(iSWAP)), NSWAP, N(sqrt(SWAP))...
With recent improvements in coherence times, superconducting transmon qubits have become a promising...
International audienceFault-tolerant quantum computers promise to provide direct simulations for neu...
10 pages, 11 figures (incl. Supplementary Information)International audienceEntangling gates between...
We propose a scheme for implementing cross-Kerr nonlinearity between two superconducting transmissio...
The quantum non-demolition (QND) measurement process begins by entangling the system to be measured,...
Gate-based quantum computers typically encode and process information in two-dimensional units calle...
All-microwave control of fixed-frequency superconducting quantum computing circuits is advantageous ...
Superconducting quantum circuits are a leading technology in the quest toward building a quantum com...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
We implemented all-microwave two qubit entanglement scheme via Stark shift-induced controlled phase ...
Quantum computation requires the precise control of the evolution of a quantum system, typically thr...
Gate-based quantum computation has been extensively investigated using quantum circuits based on qub...
We propose and analyze two types of microwave-activated gates between a fluxonium and a transmon qub...
<p>While the on-chip processing power in circuit QED devices is growing rapidly, an open challenge i...
We theoretically present an effective method to realize NiSWAP, N(sqrt(iSWAP)), NSWAP, N(sqrt(SWAP))...
With recent improvements in coherence times, superconducting transmon qubits have become a promising...
International audienceFault-tolerant quantum computers promise to provide direct simulations for neu...
10 pages, 11 figures (incl. Supplementary Information)International audienceEntangling gates between...
We propose a scheme for implementing cross-Kerr nonlinearity between two superconducting transmissio...
The quantum non-demolition (QND) measurement process begins by entangling the system to be measured,...
Gate-based quantum computers typically encode and process information in two-dimensional units calle...
All-microwave control of fixed-frequency superconducting quantum computing circuits is advantageous ...