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CERN Accelerating science

CLIC Notes

Najnovije dodano:
2021-05-21
08:46
New optimized fully loaded CLIC drive beam accelerating structure design / DORDA MARTIN, Ana (CERN) ; Doebert, Steffen (CERN)
The CLIC drive beam accelerator (DBA) provides a very high current beam to supply the RF power to the main accelerator; therefore, its efficiency is the most important figure of merit. [...]
CERN-ACC-2021-0003 ; CLIC-Note-1171.
- 2021. - 19 p.
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2021-03-04
12:13
Thermal and Modal Simulations for the CLIC Module / Petry, Alice (Helsinki Institute of Physics (FI))
The accelerating technologies used in CLIC currently have an RF efficiency of about 40 % The RF losses are dissipated as heat into the cavity disks of the super-accelerating structures, which leads to unwanted thermal deformation. [...]
CERN-ACC-2021-0002 ; CLIC-Note-1170.
- 2021. - 18 p.
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2021-02-04
15:03
The CLIC Wake Field Monitor Study / Lillestol, Reidar Lunde
In a particle collider like CLIC, it is vital to achieve high luminosities in order to be able to study rare physics processes. [...]
CERN-ACC-2021-0001 ; CLIC-Note-1169.
- 2017. - 19 p.
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2020-11-18
11:18
The Compact Linear Collider (CLIC) Snowmass 2021 LoI / Robson, Aidan (University of Glasgow (GB)) ; Burrows, Philip Nicholas (University of Oxford (GB)) ; Schulte, Daniel (CERN) ; Stapnes, Steinar (CERN)
The Compact Linear Collider (CLIC) is a multi-TeV high-luminosity linear e+e− collider under development by the CLIC accelerator collaboration. [...]
CERN-ACC-2020-0033 ; CLIC-Note-1168.
- 2020. - 4 p.
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2020-11-17
15:54
Beam Dynamics Challenges for High-Energy Linear Colliders / Adli, Erik (University of Oslo (NO)) ; Burrows, Philip Nicholas (University of Oxford (GB)) ; Schulte, Daniel (CERN) ; Stapnes, Steinar (CERN)
CLIC can in principle be extended to higher energies than the currently foreseen 3 TeV final stage. [...]
CERN-ACC-2020-0032 ; CLIC-Note-1167.
- 2020. - 4 p.
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2020-10-28
14:30
The design update of the X-band RF pulse compressor with Correction Cavities for the CLIC 380 GeV klystron based accelerator / Cai, Jinchi (Lancaster University (GB)) ; Syratchev, Igor (CERN)
The X-band RF Pulse Compressor (PC) with Correction Cavities was selected as a base line option for the CLIC 380 GeV klystron based accelerator. [...]
CERN-ACC-2020-0031 ; CLIC-Note-1166.
- 2020. - 6 p.
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2020-09-29
09:14
Optimisation of the CLIC positron source at the 1.5 TeV and 3 TeV stages / Zhao, Yongke (CERN, Shandong University (CN)) ; Latina, Andrea (CERN) ; Doebert, Steffen (CERN) ; Schulte, Daniel (CERN) ; Ma, Lianliang (Shandong University (CN))
Positron source is very important for many accelerator experiments. [...]
CERN-ACC-2020-0026 ; CLIC-Note-1165.
- 2020. - 29 p.
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2020-09-23
18:00
Cooling and Ventilation Studies for the CLIC / Cabral, Pedro (CERN (CH), Instituto Superior Tecnico (PT))) ; Nonis, Mauro (CERN)
The CLiC is composed of a large-scale complex requiring cooling and ventilation infrastructures in surface buildings and in underground tunnels [...]
CERN-ACC-2020-0025 ; CLIC-Note-1164.
- 2019. - 43 p.
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2020-09-17
12:40
Thermal and Modal Simulations for the CLIC Module / Berg, Henri (Helsinki Institute of Physics (FI))
This article examines the modal frequencies and thermal deformations with different cooling schemes in unloaded condition of the latest girder and super accelerator structure (SAS) design of the CLIC module. [...]
CERN-ACC-2020-0024 ; CLIC-Note-1163.
- 2020. - 14 p.
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2020-09-17
12:07
Performance of the Optimized Mechanical Design of the CLIC Main-Beam Quadrupole Magnet Prototype / Modena, Michele (CERN) ; Petrone, Carlo (CERN)
The Main-Beam Quadrupole (MBQ) magnets of CLIC, the Compact Linear Collider understudy at the CERN Laboratory in Geneva, are part of a critical magnet family, considering the industrial production challenges. An R&D; program on the MBQ magnets was launched in 2010 for studying and investigating several assembly solutions in order to minimize the procurement cost of a large series of magnets comprising more than 4000 units. [...]
CERN-ACC-2020-0023; CLIC-Note-1162.- Geneva : CERN, 2020 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 30 (2020) 4001505 Fulltext: PDF;

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