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CERN Accelerating science

Accelerators and Facilities outside CERN

The Future of Superconducting Technology for Particle Accelerators / Yamamoto, Akira (High Energy Accelerator Research Organization (JP))
Introduction: - Colliders constructed and operated - Future High Energy Colliders under Study - Superconducting Phases and Applications - Possible Choices among SC Materials Superconducting Magnets and the Future - Advances in SC Magnets for Accelerators - Nb$_{3}$Sn for realizing Higher Field - NbTi to Nb$_{3}$Sn for realizing High Field (> 10 T) - HL-LHC as a critical milestone for the Future of Acc [...]
- 2015. - 56 p.
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DAФNE Operation with Electron-Cloud-Clearing Electrodes / Alesini, D (Frascati) ; Drago, A (Frascati) ; Gallo, A (Frascati) ; Guiducci, S (Frascati) ; Milardi, C (Frascati) ; Stella, A (Frascati) ; Zobov, Mikhail (Frascati) ; De Santis, S (LBNL, Berkeley) ; Demma, Theo (Orsay, LAL) ; Raimondi, P (ESRF, Grenoble)
The effects of an electron cloud (e-cloud) on beam dynamics are one of the major factors limiting performances of high intensity positron, proton, and ion storage rings. In the electron-positron collider DAΦNE, namely, a horizontal beam instability due to the electron-cloud effect has been identified as one of the main limitations on the maximum stored positron beam current and as a source of beam quality deterioration. [...]
CERN-ACC-2015-0148.- Geneva : CERN, 2013 - 6 p. - Published in : Phys. Rev. Lett. 110 (2013) 124801

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Ion Colliders / Fischer, W (Brookhaven Natl. Lab.) ; Jowett, J M (CERN)
High-energy ion colliders are large research tools in nuclear physics to study the Quark-Gluon-Plasma (QGP). The range of collision energy and high luminosity are important design and operational considerations. [...]
CERN-ACC-2015-0015.- Geneva : CERN, 2014 - Published in : Rev. Accel. Sci. Technol. 7 (2014) 49-76 Fulltext: PDF;

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Design of the Main Magnets of the SESAME Storage Ring / Milanese, A (CERN) ; Huttel, E (SESAME, Jordan) ; Shehab, M (SESAME, Jordan)
This paper describes the magnetic design of the main magnets of the SESAME storage ring. The 16 dipoles are combined function bending magnets, designed with an adjustable iron shimming scheme. [...]
CERN-ACC-2014-0275.- Geneva : CERN, 2014 - 4 p. Fulltext: PDF; External link: Published version from JaCoW
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.1292

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Delivery of Special Magnets for the MedAustron Project / Kramer, T (CERN) ; Atanasov, MG (CERN) ; Barlow, R A (CERN) ; Barnes, MJ (CERN) ; Borburgh, J (CERN) ; Ducimetière, L (CERN) ; Fowler, T (CERN) ; Hourican, M (CERN) ; Mertens, V (CERN) ; Prost, A (CERN)
Ten different types of kickers, bumpers, and electrostatic and magnetic septa, along with certain power supplies and associated control system components, have been designed in a collaboration between CERN and MedAustron for an ion therapy centre in Wr. Neustadt (Austria). [...]
CERN-ACC-2014-0245.- Geneva : CERN, 2014 - 4 p. Fulltext: PDF; External link: Published version from JaCoW
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.3403

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Transverse impedance measurements in RHIC and the AGS / Biancacci, N (CERN) ; Dutheil, Y (BNL) ; Blaskiewicz, M (BNL) ; Liu, C (BNL) ; Mernick, K (BNL) ; Minty, M (BNL) ; White, S (BNL)
The RHIC luminosity upgrade program aims for an increase of the polarized proton luminosity by a factor 2. To achieve this goal a significant increase in the beam intensity is foreseen. [...]
CERN-ACC-2014-0126.- Geneva : CERN, 2014 - 5 p. Fulltext: PDF; External link: Published version from JaCoW
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.1730

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Coupling field maps of combined function bending magnets to linear optics for the SESAME storage ring / Milanese, A (CERN)
This note provides several analyses of the combined function bending magnets of the SESAME storage ring. [...]
- 2013. - 25 p.
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The Largest Accelerators and Colliders of Their Time: Proton Accelerators and Colliders / Hübner, K (CERN)
This document is part of Subvolume C 'Accelerators and Colliders' of Volume 21 'Elementary Particles' of Landolt-Börnstein - Group I 'Elementary Particles, Nuclei and Atoms'. It contains the the Section '10.1 Proton Accelerators and Colliders' of the Chapter '10 The Largest Accelerators and Colliders of Their Time' with the content: 10.1 Proton Accelerators and Colliders 10.1.1 CERN Proton Synchrotron (CPS) 10.1.2 Brookhaven Alternating Gradient Synchrotron (AGS) 10.1.3 The 70 GeV Proton Synchrotron (U-70) of IHEP-Protvino 10.1.4 The CERN Intersecting Storage Rings (ISR) 10.1.5 The CERN Super Proton Synchrotron (SPS) 10.1.6 The CERN Super Proton Synchrotron (SPS) as Proton-Antiproton Collider 10.1.7 Tevatron of Fermi National Laboratory (FNAL)
2013 - Published in : Landolt-Börnstein 21C (2013) 10.1-1 - 10.1-12 External link: Fulltext
In : Elementary particles, pp.10.1-1 - 10.1-12

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The MedAustron Project at CERN, Status Report, May 2013 / Benedikt, M (CERN) ; Dorda, U (EBG MedAustron) ; Gutleber, J (CERN)
MedAustron is a light ion-therapy and research centre based on a synchrotron accelerator complex under construction in Austria. [...]
CERN-ACC-2013-0227 ; RP-130530-A-MBE.
- 2013. - 35 p.
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Configuration Manual : Polarized Proton Collider at RHIC / Alekseev, I
Upton, NY : Brookhaven Nat. Lab., 2006. - 166 p.

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