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20212023
most citedHigh-Fidelity Qutrit Entangling Gates for Superconducting Circuits

141 citations · 289 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2023★ 5 cited

Dynamically Reconfigurable Photon Exchange in a Superconducting Quantum Processor

Brian Marinelli, Jie Luo, Hengjiang Ren +6

Realizing the advantages of quantum computation requires access to the full Hilbert space of states of many quantum bits (qubits). Thus, large-scale quantum computation faces the c…

quant-ph2023★ 3 cited

Quantum Computation of Frequency-Domain Molecular Response Properties Using a Three-Qubit iToffoli Gate

Shi-Ning Sun, Brian Marinelli, Jin Ming Koh +7

The quantum computation of molecular response properties on near-term quantum hardware is a topic of significant interest. While computing time-domain response properties is in pri…

quant-ph2022★ 58 cited

Programmable Heisenberg interactions between Floquet qubits

Long B. Nguyen, Yosep Kim, Akel Hashim +9

The fundamental trade-off between robustness and tunability is a central challenge in the pursuit of quantum simulation and fault-tolerant quantum computation. In particular, many…

quant-ph2022★ 141 cited

High-Fidelity Qutrit Entangling Gates for Superconducting Circuits

Noah Goss, Alexis Morvan, Brian Marinelli +9

Ternary quantum information processing in superconducting devices poses a promising alternative to its more popular binary counterpart through larger, more connected computational…

quant-ph2021★ 82 cited

Hardware-Efficient Microwave-Activated Tunable Coupling Between Superconducting Qubits

Bradley K. Mitchell, Ravi K. Naik, Alexis Morvan +7

Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based quantum computation. In superconducting circuits, tunable interactions are often i…