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20152022
most citedQuantum computing hardware for HEP algorithms and sensing

24 citations · 70 across the 8 of their papers we have counts for

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physics.acc-ph20222 cited

Plasma Processing for In-Situ Field Emission Mitigation of Superconducting Radiofrequency (SRF) Cryomodules

M. Martinello, P. Berrutti, B. Giaccone +14

Field emission (FE) is one of the main limiting factors of superconducting radio-frequency (SRF) cavities operating in accelerators and it occurs whenever contaminants, like dust,…

physics.acc-ph20222 cited

Higgs-Energy LEptoN (HELEN) Collider based on advanced superconducting radio frequency technology

S. Belomestnykh, P. C. Bhat, A. Grassellino +15

This Snowmass 2021 contributed paper discusses a Higgs-Energy LEptoN (HELEN) linear collider based on advances superconducting radio frequency technology. The proposed col…

physics.acc-ph20211 cited

LCLS-II-HE verification cryomodule high gradient performance and quench behavior

S. Posen, A. Cravatta, M. Checchin +43

An 8-cavity, 1.3 GHz, LCLS-II-HE cryomodule was assembled and tested at Fermilab to verify performance before the start of production. Its cavities were processed with a novel nitr…

physics.acc-ph202016 cited

High-Field Q-slope Mitigation due to Impurity Profile in Superconducting Radio-Frequency Cavities

Mattia Checchin, Anna Grassellino

In this study, we present new insights on the origin of the high-field Q-slope in superconducting radio-frequency cavities. Consequent hydrofluoric acid rinses are used to probe th…

physics.acc-ph2018

Accelerating fields up to 49 MV/m in TESLA-shape superconducting RF niobium cavities via 75C vacuum bake

A. Grassellino, A. Romanenko, D. Bice +9

In this paper we present the discovery of a new surface treatment applied to superconducting radio frequency (SRF) niobium cavities, leading to unprecedented accelerating fields of…

physics.acc-ph20174 cited

Advancement in the understanding of the field and frequency dependent microwave surface resistance of niobium

M. Martinello, S. Aderhold, S. K. Chandrasekaran +6

The radio-frequency surface resistance of niobium resonators is incredibly reduced when nitrogen impurities are dissolved as interstitial in the material, conferring ultra-high Q-f…