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相关论文: Development and Understanding of Nb$_3$Sn films fo…

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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…

加速器物理 · 物理学 2021-02-03 S. Posen , J. Lee , D. N. Seidman , A. Romanenko , B. Tennis , O. S. Melnychuk , D. A. Sergatskov

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…

加速器物理 · 物理学 2020-08-26 G. Eremeev , W. Clemens , K. Macha , C. E. Reece , A. M. Valente-Feliciano , S. Williams , U. Pudasaini , M. 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…

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…

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…

材料科学 · 物理学 2026-03-12 Eric Viklund , David N. Seidman , Sam Posen

We present an analysis of the Nb3Sn surface layers grown on a bulk niobium (Nb) coupon prepared at the same time and by the same vapor diffusion process used to make Nb3Sn coatings on 1.3 GHz cavities. Tunneling spectroscopy reveals a…

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…

加速器物理 · 物理学 2023-07-19 T. B. Petersen , M. P. Kelly , T. Reid , M. Kedzie , B. Guilfoyle , G. Chen , S. Posen , B. Tennis , G. Eremeev

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…

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…

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…

加速器物理 · 物理学 2020-04-22 Uttar Pudasaini , Grigory V. Eremeev , Charles E. Reece , James Tuggle , Michael J. Kelley

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…

加速器物理 · 物理学 2023-07-19 M. S. Shakel , H. E. Elsayed-Ali , G. Eremeev , U. Pudasaini , A. M. Valente-Feliciano

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…

加速器物理 · 物理学 2018-06-21 Uttar Pudasaini , Grigory Eremeev , Charles Reece , James Tuggle , Michael J. Kelley

As a result of a collaboration between Jefferson Lab and niobium manufacturer CBMM, ingot niobium was explored as a possible material for superconducting radiofrequency (SRF) cavity fabrication. The first single cell cavity from large grain…

加速器物理 · 物理学 2013-04-08 P. Kneisel , G. Ciovati , P. Dhakal , K. Saito , W. Singer , X. Singer , G. R. Myneni

We report on a Nb$_3$Sn-coated low-beta superconducting radio frequency (SRF) cavity intended for accelerating ions. We aim to apply the cavity in ATLAS, our Argonne National Laboratory user facility for nuclear physics studies with ion…

Superconducting RF is a key technology for future particle accelerators, now relying on advanced surfaces beyond bulk Nb for a leap in performance and efficiency. The SRF thin film strategy aims at transforming the current SRF technology by…

The mechanical vulnerability of the Nb3Sn-coated cavities is identified as one of the significant technical hurdles toward deploying them in practical accelerator applications in the not-so-distant future. It is crucial to characterize the…

加速器物理 · 物理学 2023-07-19 U. Pudasaini , G. V. Eremeev , S. Cheban

Multiple pairs of bronze pieces were joined along a common seam and then exposed to Nb vapor via sputter deposition during heating at $\sim$715 $^\circ$C to form a diffusion bond between the pieces. Polishing and alignment of the pieces…

超导电性 · 物理学 2026-03-20 Andre Juliao , Wenura Withanage , Nikolya Cadavid , Anatolii Polyanskii , Lance D Cooley

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…

加速器物理 · 物理学 2017-12-06 Y. Trenikhina , S. Posen , A. Romanenko , M. Sardela , J. -M. Zuo , D. L. Hall , M. Liepe

Nb3Sn superconducting radiofrequency (SRF) cavities have substantial potential for enabling new performance capabilities for particle accelerators for high energy physics (HEP), as well as for RF cavity-based detectors for dark matter,…

加速器物理 · 物理学 2022-03-15 S. Posen , M. Liepe , G. Eremeev , U. Pudasaini , C. E. Reece

Bulk niobium has long been the material of choice for superconducting radio-frequency applications. An alternative approach is the superconductor-insulator-superconductor multilayer structure, which enables the use of brittle high-$T_c$…

加速器物理 · 物理学 2026-05-12 Aaron Gobeyn , Wolfgang Ackermann , Herbert De Gersem
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