CERN Accelerating science

CERN Document Server 6 záznamov nájdených  Hľadanie trvalo 0.70 sekúnd. 
1.
Microwave Loss Characteristics of Nb Films for Quantum Computing / Abdisatarov, B (Fermilab ; Old Dominion U. (main) ; Jefferson Lab) ; Bafia, D (Fermilab) ; Murthy, A (Fermilab) ; Eremeev, G (Fermilab) ; Elsayed-Ali, H E (Old Dominion U. (main) ; Jefferson Lab) ; Lee, J (Fermilab) ; Netepenko, A (Fermilab) ; Grassellino, A (Fermilab) ; Romanenko, A (Fermilab) ; Carlos, C P A (CERN) et al.
Niobium films typically constitute a significant component in the construction of modern two-dimensional superconducting qubit architectures, yet their contribution to the total decay rate is not fully understood, making it difficult to definitively identify dominant loss channels in present designs. [...]
FERMILAB-PUB-22-550-TD.
- 19.
Fermilab Library Server - Fulltext
2.
Direct Measurement of Microwave Loss in Nb Films for Superconducting Qubits / Abdisatarov, B. (Fermilab ; Jefferson Lab ; Old Dominion U.) ; Bafia, D. (Fermilab) ; Murthy, A. (Fermilab) ; Eremeev, G. (Fermilab) ; Elsayed-Ali, H.E. (Jefferson Lab ; Old Dominion U.) ; Lee, J. (Fermilab) ; Netepenko, A. (Fermilab) ; Carlos, C.P. A. (CERN) ; Leith, S. (CERN) ; Rosaz, G.J. (CERN) et al.
Niobium films are a key component in modern two-dimensional superconducting qubits, yet their contribution to the total qubit decay rate is not fully understood. The presence of different layers of materials and interfaces makes it difficult to identify the dominant loss channels in present two-dimensional qubit designs. [...]
arXiv:2407.08856; FERMILAB-PUB-24-0374-SQMS.- 2024-09-16 - 20 p. - Published in : Appl. Phys. Lett. 125 (2024) 124002 Fulltext: 2407.08856 - PDF; 968bae4e0dff6c77e26a68caebca446d - PDF; External link: Fermilab Library Server
3.
Growth of Nb films on Cu for superconducting radio frequency cavities by direct current and high power impulse magnetron sputtering: A molecular dynamics and experimental study / Ghaemi, M (Helsinki Inst. of Phys.) ; Lopez-Cazalilla, A (Helsinki Inst. of Phys.) ; Sarakinos, K (Helsinki U. ; Royal Inst. Tech., Stockholm) ; Rosaz, G J (CERN) ; Carlos, C P A (CERN) ; Leith, S (CERN) ; Calatroni, S (CERN) ; Himmerlich, M (CERN) ; Djurabekova, F (Helsinki Inst. of Phys.)
The use of superconducting radio frequency (rf) cavities in particle accelerators necessitates that copper (Cu) surfaces are coated by thin niobium (Nb) films, predominantly synthesized by magnetron sputtering. A key feature of the rf cavities is that they exhibit a complex three-dimensional geometry, such that during Nb film growth vapor is not deposited on a flat substrate [...]
2024 - 11 p. - Published in : Surf. Coat. Technol. 476 (2024) 130199 Fulltext: PDF;
4.
Workshop on Dust Charging and Beam-Dust Interaction in Particle Accelerators / Blaszkiewicz, Milosz Robert (CERN) ; Felsberger, Lukas (CERN) ; Hernalsteens, Cedric (CERN) ; Heron, Jack (CERN) ; Obermair, Christoph (Graz University of Technology (AT)) ; Rosaz, Guillaume Jonathan (CERN) ; Schmidt, Rudiger (GSI - Helmholtzzentrum fur Schwerionenforschung GmbH (DE)) ; Uythoven, Jan (CERN) ; Wiesner, Christoph (CERN) ; Wollmann, Daniel (CERN) et al.
The effects of beam-dust interactions have been observed in particle accelerators and have been studied as early as the 1960s. [...]
CERN-ACC-NOTE-2023-0025.
- 2023.
Full text
5.
Next-Generation Superconducting RF Technology based on Advanced Thin Film Technologies and Innovative Materials for Accelerator Enhanced Performance and Energy Reach / Valente-Feliciano, A.-.M. (Jefferson Lab) ; Antoine, C. (Jefferson Lab ; IRFU, Saclay, DACM) ; Anlage, S. (Maryland U.) ; Ciovati, G. (Jefferson Lab) ; Delayen, J. (Jefferson Lab ; Old Dominion U.) ; Gerigk, F. (CERN) ; Gurevich, A. (Old Dominion U.) ; Junginger, T. (TRIUMF ; Victoria U.) ; Keckert, S. (Helmholtz-Zentrum, Berlin) ; Keppe, G. (INFN, Legnaro) et al.
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. [...]
arXiv:2204.02536.
- 29.
eConf - Fulltext
6.
Thin Film (High Temperature) Superconducting Radiofrequency Cavities for the Search of Axion Dark Matter / Golm, J. (CERN) ; Arguedas Cuendis, S.  (CERN) ; Calatroni, S. (CERN) ; Cogollos, C. (ICC, Barcelona U.) ; Döbrich, B. (CERN) ; Gallego, J.D. (Yebes Astron. Ctr.) ; García Barceló, J.M.  (Cartagena Politecnica U.) ; Granados, X. (Barcelona, Autonoma U.) ; Gutierrez, J. (Barcelona, Autonoma U.) ; Irastorza, I.G. (Zaragoza U.) et al.
The axion is a hypothetical particle which is a candidate for cold dark matter. Haloscope experiments directly search for these particles in strong magnetic fields with RF cavities as detectors. [...]
arXiv:2110.01296.- 2022-06 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 32 (2022) 1500605 Fulltext: PDF;
In : 15th European Conference on Applied Superconductivity (EUCAS 2021), Online, 5 - 9 Sep 2021, pp.1500605

Viď tiež: podobné mená autorov
6 Rosaz, G
2 Rosaz, G.
3 Rosaz, G.J.
20 Rosaz, Guillaume
1 Rosaz, Guillaume Jonathan
Prajete si byť pravidelne informovaný o výsledkoch tohto hľadania?
Založte si osobný email alert alebo použite RSS feed.
Nenašli ste čo ste hľadali? Skúste Vašu otázku na iných serveroch:
Rosaz, G J v Amazon
Rosaz, G J v CERN EDMS
Rosaz, G J v CERN Intranet
Rosaz, G J v CiteSeer
Rosaz, G J v Google Books
Rosaz, G J v Google Scholar
Rosaz, G J v Google Web
Rosaz, G J v IEC
Rosaz, G J v IHS
Rosaz, G J v INSPIRE
Rosaz, G J v ISO
Rosaz, G J v KISS Books/Journals
Rosaz, G J v KISS Preprints
Rosaz, G J v NEBIS
Rosaz, G J v SLAC Library Catalog
Rosaz, G J v Scirus