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Related papers: Recent advances in metallographic polishing for SR…

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High field Q-slope (HFQS) seriously limits the high gradient performance of the buffered chemically polished (BCP) superconducting radio frequency (SRF) niobium cavities. The direct cause or mechanism is not yet fully understood. In our…

Accelerator Physics · Physics 2020-01-08 Didi Luo , Kenji Saito

Surface preparation of niobium superconducting RF cavities is a critical step for achieving good RF performance under the superconducting state. Surface defect, roughness, and contamination affect the accelerating gradient and quality…

Accelerator Physics · Physics 2023-07-21 V. Chouhan , D. Bice , D. Burk , M. K. Ng , G. Wu

The surface resistance Rs of superconducting cavities prepared by sputter coating a thin niobium film on a copper substrate increases significantly stronger with the applied RF field compared to cavities of bulk material. A possible cause…

Accelerator Physics · Physics 2015-07-29 Tobias Junginger

Miniature concave hollows, made by wet etching silicon through a circular mask, can be used as mirror substrates for building optical micro-cavities on a chip. In this paper we investigate how ICP polishing improves both shape and roughness…

Optics · Physics 2013-12-02 A. Laliotis , M. Trupke , J. P. Cotter , G. Lewis , M. Kraft , E. A. Hinds

The performance of Superconducting radio frequency cavities (SRF) is strongly influenced by various impurities within the penetration depth (~50nm) of Nb, which in turn depends on the applied surface treatments. The effect of these surface…

Accelerator Physics · Physics 2015-02-27 A. Bose , S. C. Joshi Raja Ramanna Centre for Advanced Technology

Miniaturizing nonlinear optical components is essential for integrating advanced light manipulation into compact photonic devices, enabling scalable and cost-effective applications. While monocrystalline lithium niobate thin films advance…

The technological and metallurgical requirements of material for highgradient superconducting cavities are described. High-purity niobium, as the preferred metal for the fabrication of superconducting accelerating cavities, should meet…

Accelerator Physics · Physics 2015-01-29 W Singer

This paper reports on a surface impedance measurement of a niobium titanium superconducting radio frequency (SRF) cavity in a magnetic field (up to $10\,{\rm T}$). A novel method is employed to decompose the surface resistance contributions…

Accelerator Physics · Physics 2023-04-05 T. Braine , G. Rybka , A. A. Baker , J. Brodsky , G. Carosi , N. Du , N. Woollett , S. Knirck , M. Jones

The effect of pulsed laser polishing on rough niobium surfaces was investigated. We created different well-defined roughness profiles with standard emery papers and subsequently remelted random surface areas with a size of about 2x2 mm^2…

Applied Physics · Physics 2020-10-06 V. Porshyn , P. Rothweiler , D. Lützenkirchen-Hecht

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…

Superconducting qubits have arisen as a leading technology platform for quantum computing which is on the verge of revolutionizing the world's calculation capacities. Nonetheless, the fabrication of computationally reliable qubit circuits…

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…

Niobium superconducting radiofrequency cavities enable applications in modern accelerators and quantum computers. However, the surface resistance significantly deteriorates the cavities performance. Nitrogen doping surface treatment can…

Materials Science · Physics 2022-07-28 Xiaotian Fang , Jin-Su Oh , Matt Kramer , A. Romanenko , A. Grassellino , John Zasadzinski , Lin Zhou

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…

Most of the current research in superconducting radio frequency (SRF) cavities is focused on ways to reduce the construction and operating cost of SRF based accelerators as well as on the development of new or improved cavity processing…

Accelerator Physics · Physics 2013-10-31 Pashupati Dhakal , Gianluigi Ciovati , Peter Kneisel , Ganapati Rao Myneni

One of many challenges for niobium (Nb) based superconducting devices is the improvement over the surface morphology and superconducting properties as well as the reduction of defects. We employed a novel deposition technique, i.e. biased…

Materials Science · Physics 2017-08-14 Salinporn Kittiwatanakul , Nattawut Anuniwat , Nam Dao , Stuart A. Wolf , Jiwei Lu

R\&D activity on Cu photocathodes is under development at the SPARC\_LAB test facility to fully characterize each stage of the photocathode "life" and to have a complete overview of the photoemission properties in high brightness…

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

Titanium and niobium are the main materials used for the fabrication of Superconducting Radio Frequency (SRF) cavities. These two metals are usually joined , using various welding techniques, using a third material in between. This…

Accelerator Physics · Physics 2022-09-07 M. Parise , D. Passarelli , J. Bernardini

3D-printing of radiofrequency (RF) cavity resonators could provide a cost-effective solution that enables rapid prototyping and design flexibility compared to traditional fabrication of full-metal cavities. In this work, the feasibility of…

Accelerator Physics · Physics 2025-12-18 David Sims , Benjamin Sims , Brian Wright , John W. Lewellen , Sergey V. Baryshev