activity
20052023
most citedRoadmap on Spin-Wave Computing

475 citations · 1.9k across the 33 of their papers we have counts for

collaborators

52 papers

quant-ph2023★ 1 cited

Characterizing Niobium Nitride Superconducting Microwave Coplanar Waveguide Resonator Array for Circuit Quantum Electrodynamics in Extreme Conditions

Paniz Foshat, Paul Baity, Sergey Danilin +9

The high critical magnetic field and relatively high critical temperature of niobium nitride (NbN) make it a promising material candidate for applications in superconducting quantu…

quant-ph2023★ 19 cited

Circle fit optimization for resonator quality factor measurements: point redistribution for maximal accuracy

Paul G. Baity, Connor Maclean, Valentino Seferai +4

The control of material loss mechanisms is playing an increasingly important role for improving coherence times of superconducting quantum devices. Such material losses can be char…

quant-ph2022★ 5 cited

Quantum emulation of the transient dynamics in the multistate Landau-Zener model

Alexander Stehli, Jan David Brehm, Tim Wolz +4

Quantum simulation is one of the most promising near term applications of quantum computing. Especially, systems with a large Hilbert space are hard to solve for classical computer…

quant-ph2022★ 1 cited

Quantum sensing with tunable superconducting qubits: optimization and speed-up

Sergey Danilin, Nicholas Nugent, Martin Weides

Sensing and metrology play an important role in fundamental science and applications by fulfilling the ever-present need for more precise data sets and by allowing researchers to m…

cond-mat.mes-hall2022★ 3 cited

Antiferromagnetic cavity magnon polaritons in collinear and canted phases of hematite

I. Boventer, H. T. Simensen, B. Brekke +5

Cavity spintronics explores light matter interactions at the interface between spintronic and quantum phenomena. Until now, studies have focused on the hybridization between ferrom…

physics.app-ph2021★ 475 cited

Roadmap on Spin-Wave Computing

A. V. Chumak, P. Kabos, M. Wu +113

Magnonics is a field of science that addresses the physical properties of spin waves and utilizes them for data processing. Scalability down to atomic dimensions, operations in the…