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20212025
most citedQ-factor optimization for high-beta 650 MHz cavities for PIP-II

18 citations · 19 across the 5 of their papers we have counts for

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physics.acc-ph2025

Superconducting Low-beta NbSn Cavity for ATLAS and Future Ion Accelerators

T. Petersen, G. Eremeev, B. Tennis +13

We report on a NbSn-coated low-beta superconducting radio frequency (SRF) cavity intended for accelerating ions. We aim to apply the cavity in ATLAS, our Argonne National Labor…

physics.acc-ph2024

Latest Development of Electropolishing Optimization for 650 MHz Niobium Cavity

V. Chouhan, D. Bice, D. Burk +15

Electropolishing (EP) of 1.3 GHz niobium superconducting RF cavities is conducted to achieve a desired smooth and contaminant-free surface that yields good RF performance. Achievin…

physics.acc-ph2023

Advanced surface treatments for medium-velocity superconducting RF cavities for high accelerating gradient continuous-wave operation

K. McGee, S. Kim, K. Elliott +13

Nitrogen-doping and furnace-baking are advanced high-Q0 recipes developed for 1.3 GHz TESLA-type cavities. These treatments will significantly benefit the high-Q0 linear accelerato…

physics.acc-ph20231 cited

Demonstration of Niobium Tin in 218 MHz Low-beta Quarter Wave Accelerator Cavity

T. B. Petersen, M. P. Kelly, T. Reid +6

A 218 MHz quarter wave niobium cavity has been fabricated for the purpose of demonstrating Nb3Sn technology on a low-beta accelerator cavity. Niobiumtin has been established as a p…

physics.acc-ph202118 cited

Q-factor optimization for high-beta 650 MHz cavities for PIP-II

M. Martinello, D. J. Bice, C. Boffo +8

High Q-factors are of utmost importance to minimize losses of superconducting radio-frequency cavities deployed in continuous wave particle accelerators. This study elucidates the…