CERN Accelerating science

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1.
Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC / Kemppinen, Juha (ETH, Zurich ; CERN) ; Mainaud Durand, Helene (CERN) ; Kostka, Z.S. (CERN)
Compact Linear Collider (CLIC) is a study of an electron-positron collider with nominal energy of 3 TeV and luminosity of 2 ∙ 1034 cm-2s-1. The luminosity goal leads to stringent alignment requirements for single quadrupole magnets. [...]
CERN-ACC-2016-0339; CLIC-Note-1072.- Geneva : CERN, 2016 - 6 p. - Published in : 10.18429/JACoW-MEDSI2016-MOPE15 Fulltext: PDF;
2.
Improving high precision cam mover’s stiffness / Kemppinen, Juha (CERN) ; Mainaud Durand, Helene (CERN) ; Herty, Andreas (CERN)
Pre-alignment is a key challenge of the Compact Linear Collider (CLIC) study. The requirement for CLIC main beam quadrupole (MBQ) alignment is positioning to within 1 μm from target in 5 degrees of freedom (DOF) with ± 3 mm travel. [...]
CERN-ACC-2019-224; CLIC-Note-1193.- 2019 - 3 p. - Published in : 10.18429/JACoW-IPAC2019-THPGW055 Preprint: PDF;
In : 10th International Particle Accelerator Conference, Melbourne, Australia, 19 - 24 May 2019, pp.THPGW055
3.
CLIC main beam quadrupole active pre-alignment based on cam movers   / Kemppinen, J (CERN) ; Griffet, S (CERN) ; Leuxe, R (CERN) ; Mainaud Durand, H (CERN) ; Sandomierski, J (CERN) ; Sosin, M (CERN)
WP: 9: Technology for normal conducting higher energy linear accelerators
Task: 9.3: Linac & FF Stabilization

Compact Linear Collider (CLIC) is a study for a future 48 km long linear electron-positron collider in the multi TeV range. [...]
EuCARD-CON-2012-026.
- 2012.
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4.
Validation of CLIC Re-Adjustment System Based on Eccentric Cam Movers : One Degree of Freedom Mock-Up   / Kemppinen, J (CERN) ; Mainaud Durand, H (CERN) ; Lackner, F (CERN)
WP: 9: Technology for normal conducting higher energy linear accelerators
Task: 9.3: Linac & FF Stabilization

Compact Linear Collider (CLIC) is a 48 km long linear accelerator currently studied at CERN. [...]
EuCARD-CON-2011-014.
- 2011.
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5.
Validation of a Micrometric remotely controlled pre-alignment system for the CLIC Linear Collider using a test setup (Mock-Up) with 5 degrees of freedom   / Mainaud Durand, H (CERN) ; Anastasopoulos, M (CERN) ; Griffet, S (CERN) ; Kemppinen, J (CERN) ; Leuxe, R (CERN) ; Sosin, M (CERN)
WP: 9: Technology for normal conducting higher energy linear accelerators
Task: 9.3: Linac & FF Stabilization

The CLIC main beam quadrupoles need to be prealigned within 17 um rms with respect to a straight reference line along a sliding window of 200 m. [...]
CERN-ATS-2011-081 ; EuCARD-CON-2011-037 ; CLIC-Note-892.
- 2011
Published version from JACoW - Full text - Access to fulltext document - Fulltext
6.
Recent development of micro-triangulation for magnet fiducialisation / Vlachakis, Vasileios (CERN) ; Fuchs, Jean-Frederic (CERN) ; Mainaud Durand, Helene (CERN)
The micro-triangulation method is proposed as an alternative for magnet fiducialisation. [...]
CERN-ACC-NOTE-2016-0068.
- 2016. - 6 p.
Full text
7.
Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System / Mainaud Durand, Helene (CERN) ; Duquenne, Mathieu (CERN) ; Sandomierski, Jacek (CERN) ; Sosin, Mateusz (CERN) ; Rude, Vivien (CERN)
This paper presents a new method of fiducialisation applied to determine the magnetic axis of the Drive Beam quadrupole of the CLIC project with respect to external alignment fiducials, within a micrometric accuracy and precision. [...]
CERN-ACC-2015-0083.
- 2014. - 7 p.
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8.
Design and Study on a 5 Degree-of-freedom Adjustment Platform for CLIC Drive Beam Quadrupoles / Sosin, Mateusz (CERN) ; Anastasopoulos, Michail (CERN) ; Duquenne, Mathieu (CERN) ; Kemppinen, Juha (CERN) ; Mainaud Durand, Helene (CERN) ; Rude, Vivien (CERN) ; Sandomierski, Jacek (CERN)
Since several years CERN is studying the feasibility of building a high energy e⁺ e^{−} linear collider: the CLIC (Compact LInear Collider). The pre-alignment precision and accuracy requirement for the transverse positions of the linac components is typically 14 micrometers over a sliding window of 200m. [...]
2014 - 3 p. - Published in : , pp. TUPRI095 Fulltext: PDF; External link: Published version from JACoW
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.TUPRI095
9.
Frequency scanning interferometry for CLIC component fiducialisation / Kamugasa, Solomon William (CERN) ; Gayde, Jean-Christophe (CERN) ; Mainaud Durand, Helene (CERN)
We present a strategy for the fiducialisation of CLIC’s Main Beam Quadrupole (MBQ) magnets using Frequency Scanning Interferometry (FSI). [...]
CERN-ACC-NOTE-2016-0070.
- 2016. - 6 p.
Full text
10.
Theoretical and practical feasibility demonstration of a micrometric remotely controlled pre-alignment system for the CLIC linear collider   / Mainaud Durand, H (CERN) ; Anastasopoulos, M (CERN) ; Chritin, N (CERN) ; Griffet, S (CERN) ; Kemppinen, J (CERN) ; Sosin, M (CERN) ; Touze, T (ENSTA Bretagne, Brest)
WP: 9: Technology for normal conducting higher energy linear accelerators
Task: 9.3: Linac & FF Stabilization

The active pre-alignment of the Compact Linear Collider (CLIC) is one of the key points of the project: the components must be pre-aligned w.r.t. [...]
EuCARD-CON-2011-039 ; CERN-ATS-2011-082 ; CLIC-Note-900.
- 2011
Published version from JACoW - Fulltext - Fulltext

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