Superconducting NbTiN Thin Films for Superconducting Radio Frequency Accelerator Cavity Applications

Superconducting NbTiN Thin Films for Superconducting Radio Frequency Accelerator Cavity Applications
Author:
Publisher:
Total Pages:
Release: 2016
Genre:
ISBN:

Download Superconducting NbTiN Thin Films for Superconducting Radio Frequency Accelerator Cavity Applications Book in PDF, Epub and Kindle

Current superconducting radio frequency technology, used in various particle accelerator facilities across the world, is reliant upon bulk niobium superconducting cavities. Due to technological advancements in the processing of bulk Nb cavities, the facilities have reached accelerating fields very close to a material-dependent limit, which is close to 50 MV/m for bulk Nb. One possible solution to improve upon this fundamental limitation was proposed a few years ago by Gurevich [Appl. Phys. Lett. 88, 012511 (2006)], consisting of the deposition of alternating thin layers of superconducting and insulating materials on the interior surface of the cavities. The use of type-II superconductors with Tc> TcNb and Hc> HcNb, (e.g., Nb3Sn, NbN, or NbTiN) could potentially greatly reduce the surface resistance (Rs) and enhance the accelerating field, if the onset of vortex penetration is increased above HcNb, thus enabling higher field gradients. Although Nb3Sn may prove superior, it is not clear that it can be grown as a suitable thin film for the proposed multilayer approach, since very high temperature is typically required for its growth, hindering achieving smooth interfaces and/or surfaces. On the other hand, since NbTiN has a smaller lower critical field (Hc1) and higher critical temperature (Tc) than Nb and increased conductivity compared to NbN, it is a promising candidate material for this new scheme. Here, the authors present experimental results correlating filmmicrostructure with superconducting properties on NbTiN thin film coupon samples while also comparing filmsgrown with targets of different stoichiometry. In conclusion, it is worth mentioning that the authors have achieved thin films with bulk-like lattice parameter and transition temperature while also achieving Hc1 values larger than bulk for films thinner than their London penetration depths.


Superconducting NbTiN Thin Films for Superconducting Radio Frequency Accelerator Cavity Applications
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2016 - Publisher:

GET EBOOK

Current superconducting radio frequency technology, used in various particle accelerator facilities across the world, is reliant upon bulk niobium superconducti
Superconducting Thin Films for the Enhancement of Superconducting Radio Frequency Accelerator Cavities
Language: en
Pages: 151
Authors: Matthew C. Burton
Categories: Thin films
Type: BOOK - Published: 2017 - Publisher:

GET EBOOK

Bulk niobium (Nb) superconducting radio frequency (SRF) cavities are currently the preferred method for acceleration of charged particles at accelerating facili
Thin Film Approaches to the SRF Cavity Problem
Language: en
Pages: 108
Authors: Douglas B. Beringer
Categories: Linear accelerators
Type: BOOK - Published: 2017 - Publisher:

GET EBOOK

Superconducting Radio Frequency (SRF) cavities are responsible for the acceleration of charged particles to relativistic velocities in most modern linear accele
Superconducting Radiofrequency Technology for Accelerators
Language: en
Pages: 405
Authors: Hasan Padamsee
Categories: Science
Type: BOOK - Published: 2023-03-06 - Publisher: John Wiley & Sons

GET EBOOK

Superconducting Radiofrequency Technology for Accelerators Single source reference enabling readers to understand and master state-of-the-art accelerator techno
Shielding Superconductors with Thin Films as Applied to Rf Cavities for Particle Accelerators
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2015 - Publisher:

GET EBOOK

Determining the optimal arrangement of superconducting layers to withstand large-amplitude ac magnetic fields is important for certain applications such as supe