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20172022
most citedQuantum computing hardware for HEP algorithms and sensing

24 citations · 49 across the 5 of their papers we have counts for

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quant-ph202224 cited

Quantum computing hardware for HEP algorithms and sensing

M. Sohaib Alam, Sergey Belomestnykh, Nicholas Bornman +37

Quantum information science harnesses the principles of quantum mechanics to realize computational algorithms with complexities vastly intractable by current computer platforms. Ty…

quant-ph20222 cited

Simple coplanar waveguide resonator mask targeting metal-substrate interface

Cameron J. Kopas, Ella Lachman, Corey Rae H. McRae +4

This white paper presents a single-layer mask, found at https://github.com/Boulder-Cryogenic-Quantum-Testbed/simple-resonator-mask. It is designed for fabrication of superconductin…

quant-ph202113 cited

Perspective: Reproducible Coherence Characterization of Superconducting Quantum Devices

Corey Rae H McRae, Gregory M Stiehl, Haozhi Wang +5

As the field of superconducting quantum computing approaches maturity, optimization of single-device performance is proving to be a promising avenue towards large-scale quantum com…

quant-ph202110 cited

A universal quantum gate set for transmon qubits with strong ZZ interactions

Junling Long, Tongyu Zhao, Mustafa Bal +13

High-fidelity single- and two-qubit gates are essential building blocks for a fault-tolerant quantum computer. While there has been much progress in suppressing single-qubit gate e…

quant-ph2020

Merged-element transmon

R. Zhao, S. Park, T. Zhao +4

Transmon qubits are ubiquitous in the pursuit of quantum computing using superconducting circuits. However, they have some drawbacks that still need to be addressed. Most important…