1.
|
Crab Cavities for ILC
/ McIntosh, Peter (Daresbury ; Cockcroft Inst. Accel. Sci. Tech.) ; Belomestnykh, Sergey (Fermilab) ; Burt, Graeme (Lancaster U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Calaga, Rama (CERN) ; De Silva, Subashini (Jefferson Lab ; Old Dominion U. (main)) ; Delayen, Jean (Old Dominion U. ; Jefferson Lab) ; Gonin, Ivan (Fermilab) ; Khabiboulline, Timergali (Fermilab) ; Lunin, Andrei (Fermilab) ; Okugi, Toshiyuki (KEK, Tsukuba) et al.
For the 14 mrad crossing angle proposed, crab cavity systems are fundamentally anticipated for the viable operation of the International Linear Collider (ILC), in order to maximise its luminosity performance. Since 2021, a specialist development team have been defining optimum crab cavity technologies which can fulfil the operational requirements for ILC, both for its baseline centre-of-mass energy of 250 GeV, but also extending those requirements out to higher beam collision intensities. [...]
FERMILAB-CONF-23-0863-SQMS-TD.-
2023 - 9 p.
- Published in : JACoW SRF 2023 (2023) 990-998
Fermilab Library Server: PDF; Fulltext: PDF; External link: Fermilab Library Server
In : 21st International Conference on Radio-Frequency Superconductivity (SRF 2023), Grand Rapids, MI, United States, 22 - 30 Jun 2023, pp.990-998
|
|
2.
|
Power Budgets and Performance Considerations for Future Higgs Factories
/ Zimmermann, Frank (CERN) ; Belomestnykh, Sergey (Fermilab) ; Biagini, Maria (Frascati) ; Boscolo, Manuela (Frascati) ; Faus-Golfe, Angeles (IJCLab, Orsay) ; Gao, Jie (Beijing, Inst. High Energy Phys.) ; Koratzinos, Michael (PSI, Villigen ; U. Malta) ; List, Benno (DESY) ; Litvinenko, Vladimir (SUNY, Stony Brook) ; Nanni, Emilio (SLAC) et al.
A special session at eeFACT’22 reviewed the electrical power budgets and luminosity risks for eight proposed future Higgs and electroweak factories (CCC, CEPC, CERC, CLIC, FCC-ee, HELEN, ILC, and RELIC) and, in comparison, for a lepton-hadron collider (EIC) presently under construction. We report highlights of presentations and discussions..
FERMILAB-CONF-23-113-AD-TD; JLAB-ACP-23-3948.-
2023 - 6 p.
- Published in : JACoW eeFACT 2022 (2023) 256-261
Fulltext: document - PDF; 34d7f5ca7b08f5a18b631346bed0b03f - PDF; External links: Fermilab Library Server; JLab Document Server; JLab Document Server
In : 65th ICFA Advanced Beam Dynamics Workshop on High Luminosity Circular e+ e- Colliders (eeFACT2022), INFN, Frascati, Italy, 12 - 16 Sep 2022, pp.256-261
|
|
3.
|
10.2172/1631119
|
4.
|
|
Accelerators for Electroweak Physics and Higgs Boson Studies
/ Faus-Golfe, A. (IJCLab, Orsay) ; Hoffstaetter, G.H. (Cornell U.) ; Qin, Q. (Geneva U. ; CERN ; Paris U., VI-VII) ; Zimmermann, F. (CERN) ; Barklow, T. ; Barzi, E. ; Belomestnykh, S. ; Biagini, M. ; Llatas, M. Chamizo ; Gao, J. et al.
We discuss the goals, the designs, the state of technical readiness, and the critical R&D needs of the accelerators that are currently under discussion as Higgs and electroweak factories. [...]
arXiv:2209.05827.
-
74 p.
eConf - Fulltext
|
|
5.
|
|
Snowmass'21 Accelerator Frontier Report
/ Gourlay, S. (LBNL, Berkeley) ; Raubenheimer, T. (SLAC) ; Shiltsev, V. (Fermilab) ; Arduini, G. (CERN) ; Assmann, R. (DESY) ; Barbier, C. (Oak Ridge) ; Bai, M. (SLAC) ; Belomestnykh, S. (Fermilab) ; Bermudez, S. (CERN) ; Bhat, P. (Fermilab) et al.
In 2020-2022, extensive discussions and deliberations have taken place in corresponding topical working groups of the Snowmass Accelerator Frontier (AF) and in numerous joint meetings with other Frontiers, Snowmass-wide meetings, a series of Colloquium-style Agoras, cross-Frontier Forums on muon and electron-positron colliders and the collider Implementation Task Force (ITF). [...]
arXiv:2209.14136 ; FERMILAB-FN-1207-AD.
-
46.
Fermilab Library Server - eConf - Fulltext - Fulltext
|
|
6.
|
Muon Collider Forum Report
/ Black, K.M. (U. Wisconsin, Madison (main)) ; Jindariani, S. (Fermilab) ; Li, D. (LBNL, Berkeley) ; Maltoni, F. (Louvain U., CP3 ; INFN, Bologna ; U. Bologna, DIFA) ; Meade, P. (YITP, Stony Brook) ; Stratakis, D. (Fermilab) ; Acosta, D. (Rice U.) ; Agarwal, R. (LBNL, Berkeley) ; Agashe, K. (Maryland U.) ; Aimè, C. (Pavia U.) et al.
A multi-TeV muon collider offers a spectacular opportunity in the direct exploration of the energy frontier. Offering a combination of unprecedented energy collisions in a comparatively clean leptonic environment, a high energy muon collider has the unique potential to provide both precision measurements and the highest energy reach in one machine that cannot be paralleled by any currently available technology. [...]
arXiv:2209.01318; FERMILAB-FN-1194.-
2024-02-23 - 94 p.
- Published in : JINST 19 (2024) T02015
Fulltext: 2209.01318 - PDF; f9a96f4855e018cb1a1bb8d4d6ebbc35 - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
|
|
7.
|
|
RF Accelerator Technology R&D: Report of AF7-rf Topical Group to Snowmass 2021
/ Belomestnykh, Sergey (Fermilab ; Stony Brook U.) ; Nanni, Emilio A. (SLAC) ; Weise, Hans (DESY) ; Baryshev, Sergey V. (Michigan State U.) ; Dhakal, Pashupati (Jefferson Lab) ; Geng, Rongli (Oak Ridge) ; Giaccone, Bianca (Fermilab) ; Jing, Chunguang (Argonne, PHY ; Euclid Techlabs, Solon) ; Liepe, Matthias (Cornell U.) ; Lu, Xueying (Argonne, PHY ; Northern Illinois U.) et al.
Accelerator radio frequency (RF) technology has been and remains critical for modern high energy physics (HEP) experiments based on particle accelerators. [...]
arXiv:2208.12368 ; FERMILAB-FN-1189-TD.
-
Fermilab Library Server - eConf - Fulltext - Fulltext
|
|
8.
|
|
U.S. National Accelerator R&D Program on Future Colliders
/ Bhat, P.C. (Fermilab) ; Belomestnykh, S. (Fermilab ; SUNY, Stony Brook) ; Bross, A. (Fermilab) ; Dasu, S. (Wisconsin U., Madison) ; Denisov, D. (Brookhaven) ; Gourlay, S. (LBL, Berkeley) ; Jindariani, S. (Fermilab) ; Lankford, A.J. (UC, Irvine) ; Nagaitsev, S. (Fermilab ; Chicago U.) ; Nanni, E.A. (SLAC) et al.
Future colliders are an essential component of a strategic vision for particle physics. [...]
arXiv:2207.06213 ; FERMILAB-FN-1176-AD-PPD-TD.
-
9.
Fermilab Library Server - eConf - Fulltext - Fulltext
|
|
9.
|
|
10.
|
|
Key directions for research and development of superconducting radio frequency cavities
/ Belomestnykh, S. (Fermilab ; Stony Brook U.) ; Posen, S. (Fermilab) ; Bafia, D. (Fermilab) ; Balachandran, S. (Natl. High Mag. Field Lab.) ; Bertucci, M. (LASA, Segrate) ; Burrill, A. (SLAC) ; Cano, A. (Fermilab) ; Checchin, M. (Fermilab) ; Ciovati, G. (Jefferson Lab) ; Cooley, L.D. (Natl. High Mag. Field Lab.) et al.
Radio frequency superconductivity is a cornerstone technology for many future HEP particle accelerators and experiments from colliders to proton drivers for neutrino facilities to searches for dark matter. [...]
arXiv:2204.01178 ; FERMILAB-PUB-22-241-SQMS-TD.
-
Fermilab Library Server - eConf - Fulltext - Fulltext
|
|