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Related papers: Analysis of Nb3Sn surface layers for superconducti…

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Nb3Sn (Tc ~ 18 K and Hsh ~ 400 mT) is a prospective material to replace Nb (Tc ~ 9 K and Hsh ~ 200 mT) in SRF accelerator cavities for significant cost reduction and performance enhancement. Because of its material properties, Nb3Sn is best…

Accelerator Physics · Physics 2020-04-22 Uttar Pudasaini , Grigory V. Eremeev , Charles E. Reece , James Tuggle , Michael J. Kelley

We deposited Nb3Sn film on the inner surface of a 2.6 GHz Nb superconducting radiofrequency (SRF) cavity by co-sputtering using a composite of Nb and Sn tube targets in a DC cylindrical magnetron sputtering system, followed by thermal…

Workbench-size particle accelerators, enabled by Nb3Sn-based superconducting radio-frequency (SRF) cavities, hold the potential of driving scientific discovery by offering a widely accessible and affordable source of high-energy electrons…

A DC cylindrical magnetron sputtering system has been commissioned and operated to deposit Nb3Sn onto 2.6 GHz Nb SRF cavities. After optimizing the deposition conditions in a mock-up cavity, Nb-Sn films are deposited first on flat samples…

Accelerator Physics · Physics 2023-07-19 M. S. Shakel , H. E. Elsayed-Ali , G. Eremeev , U. Pudasaini , A. M. Valente-Feliciano

We report an atomic-scale analysis of the microstructure of Nb3Sn coating on Nb prepared by vapor diffusion process for superconducting radiofrequency (SRF) cavity application using transmission electron microscopy (TEM). Epitaxial growth…

Materials Science · Physics 2019-07-10 Jaeyel Lee , Sam Posen , Zugang Mao , Yulia Trenikhina , Kai He , Daniel L Hall , Matthias Liepe , David N Seidman

The accelerating gradient of Nb3Sn superconducting radiofrequency (SRF) cavities is currently limited, and the underlying cause remains an open question in the field. One leading hypothesis attributes this limitation to the presence of…

Materials Science · Physics 2026-03-12 Eric Viklund , David N. Seidman , Sam Posen

Nb3Sn is a promising next-generation material for superconducting radiofrequency cavities, with significant potential for both large scale and compact accelerator applications. However, so far, Nb3Sn cavities have been limited to cw…

Accelerator Physics · Physics 2021-02-03 S. Posen , J. Lee , D. N. Seidman , A. Romanenko , B. Tennis , O. S. Melnychuk , D. A. Sergatskov

Nb3Sn has the potential to achieve superior performance in terms of quality factor, accelerating gradient and operating temperature (4.2 K vs 2 K) resulting in significant reduction in both capital and operating costs compared to…

Accelerator Physics · Physics 2018-06-21 Uttar Pudasaini , Grigory Eremeev , Charles Reece , James Tuggle , Michael J. Kelley

We report on atomic-scale analyses of grain boundary (GB) structures and segregation in Nb3Sn coatings on Nb, prepared by the vapor-diffusion process, for superconducting radiofrequency (SRF) cavity applications, utilizing atom-probe…

SRF niobium cavities are the building blocks of modern accelerators for scientific applications. Lower surface resistance, higher fields, and high operating temperatures advance the reach of the future accelerators for scientific discovery…

Accelerator Physics · Physics 2020-08-26 G. Eremeev , W. Clemens , K. Macha , C. E. Reece , A. M. Valente-Feliciano , S. Williams , U. Pudasaini , M. Kelley

Nb$_3$Sn is a promising advanced material under development for superconducting radiofrequency (SRF) cavities. Past efforts have been focused primarily on small development-scale cavities, but large, often multi-celled cavities, are needed…

Applied Physics · Physics 2020-12-30 T. Spina , B. M. Tennis , J. Lee , D. N. Seidman , S. Posen

Surface structures on radio-frequency (RF) superconductors are crucially important in determining their interaction with the RF field. Here we investigate the surface compositions, structural profiles, and valence distributions of oxides,…

Axion dark matter searches require superconducting radio-frequency (SRF) cavities on copper (Cu) substrates with quality factors Q > 10^5 in multi-tesla magnetic fields. Copper reduces thermal noise and allows complex geometries. Nb3Sn is a…

Superconductivity · Physics 2026-05-06 Andre Juliao

A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium used for the fabrication of the nine-cell 1.3 GHz cavities for the linear collider project TESLA. Cylindrical Nb samples have been subjected…

Accelerator Physics · Physics 2009-11-10 S. Casalbuoni , E. -A. Knabbe , J. Koetzler , L. Lilje , L. von Sawilski , P. Schmueser , B. Steffen

This contribution discusses the results of an in-situ angular XPS study on the thermal evolution of the native oxide layer on Nb3Sn and pure Nb. XPS data were recorded with conventional spectrometers using an AlK(alpha) X-ray source for…

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 promising next generation SRF material, but development has…

Accelerator Physics · Physics 2023-07-19 T. B. Petersen , M. P. Kelly , T. Reid , M. Kedzie , B. Guilfoyle , G. Chen , S. Posen , B. Tennis , G. Eremeev

A detailed study of the near-surface structure and composition of Nb, the material of choice for Superconducting Radio Frequency accelerator (SRF) cavities, is of great importance in order to understand the effects of different treatments…

While Nb3Sn theoretically offers better superconducting RF cavity performance (Q0 and Eacc) to Nb at any given temperature, peak RF magnetic fields consistently fall short of the 400 mT prediction. The relatively rough topography of…

Superconductivity · Physics 2024-12-11 Eric M. Lechner , Olga Trofimova , Jonathan W. Angle , Madison C. DiGuilio , Uttar Pudasaini

Nb$_3$Sn has great potential to become the material of choice for fabrication of SRF cavities. The higher critical temperature of Nb$_3$Sn potentially allows for an increased operational temperature in SRF cavities, which could enable…

Accelerator Physics · Physics 2017-12-06 Y. Trenikhina , S. Posen , A. Romanenko , M. Sardela , J. -M. Zuo , D. L. Hall , M. Liepe

We present the results of commissioning a dedicated furnace for Nb3Sn coatings of 2.6 GHz single cell cavities. Nb3Sn is a desired coating due to its high critical temperature and smaller surface resistance compared to bulk Nb. Usage of…

Accelerator Physics · Physics 2023-07-19 P. A. Kulyavtsev , G. Eremeev , S. Posen , B. Tennis , J. Zasadzinski
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