CERN Accelerating science

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1.
Tracking Studies in the LHeC Lattice / Cruz Alaniz, Emilia (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Newton, David (U. Liverpool (main) ; Cockcroft Inst. Accel. Sci. Tech.) ; Tomás, Rogelio (CERN)
The Large Hadron Electron Collider (LHeC) is a proposed upgrade of the LHC to provide electron-proton collisions and explore a new regime of energy and luminosity for nucleon-lepton scattering. A nominal design has previously been presented, featuring a lattice and optical configuration to focus one of the proton beams of the LHC (reaching a value of β*=10 cm) and to collide it head-on with an electron beam to produce collisions with the desired luminosity of L=10³³ cm⁻² s⁻¹. [...]
CERN-ACC-2015-315.- 2015 - 4 p. - Published in : (2015) , pp. MOPJE079 Published version from JACoW: PDF; External link: JACOW
In : 6th International Particle Accelerator Conference, Richmond, VA, USA, 3 - 8 May 2015, pp.MOPJE079
2.
Design of the large hadron electron collider interaction region / Cruz-Alaniz, E (U. Liverpool (main) ; Cockcroft Inst. Accel. Sci. Tech.) ; Newton, D (U. Liverpool (main) ; Cockcroft Inst. Accel. Sci. Tech.) ; Tomás, R (CERN) ; Korostelev, M (Lancaster U. ; Cockcroft Inst. Accel. Sci. Tech.)
The large hadron electron collider (LHeC) is a proposed upgrade of the Large Hadron Collider (LHC) within the high luminosity LHC (HL-LHC) project, to provide electron-nucleon collisions and explore a new regime of energy and luminosity for deep inelastic scattering. The design of an interaction region for any collider is always a challenging task given that the beams are brought into crossing with the smallest beam sizes in a region where there are tight detector constraints. [...]
2015 - 11 p. - Published in : Phys. Rev. Spec. Top. Accel. Beams 18 (2015) 111001 APS Open Access article: PDF;
3.
Initial Estimate of Fringe Field Effects in HL-LHC using Frequency Map Analysis / Jones, Sam (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Newton, David (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Wolski, Andrzej (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.)
The planned High Luminosity upgrade to the LHC will require stronger focusing of the beam in the interaction regions. To achieve this, the inner triplet quadrupoles will be replaced with new magnets having larger gradient and aperture. [...]
2014 - 4 p. - Published in : , pp. TUPRO025 Fulltext: PDF; External link: Published version from JACoW
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.1067
4.
LHeC IR Optics Design Integrated into the HL-LHC Lattice / Cruz Alaniz, Emilia (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Korostelev, Maxim (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Newton, David (Liverpool U. ; Cockcroft Inst. Accel. Sci. Tech.) ; Tomás, Rogelio (CERN)
The LHeC is a proposed upgrade to the LHC to provide electron-proton collisions and explore the new regime of energy and intensity for lepton-nucleon scattering. The work presented here investigates optics and layout solutions allowing simultaneous nucleon-nucleon and lepton-nucleon collisions at separate interaction points compatible with the proposed HL-LHC lattice. [...]
2014 - 4 p. - Published in : , pp. TUPRO070 Fulltext: PDF; External link: Published version from JACoW
In : 5th International Particle Accelerator Conference, Dresden, Germany, 15 - 20 Jun 2014, pp.TUPRO070
5.
Muon (g-2) Technical Design Report / Grange, J ; Guarino, V ; Winter, P ; Wood, K ; Zhao, H ; Carey, R M ; Gastler, D ; Hazen, E ; Kinnaird, N ; Miller, J P et al.
The Muon (g-2) Experiment, E989 at Fermilab, will measure the muon anomalous magnetic moment a factor-of-four more precisely than was done in E821 at the Brookhaven National Laboratory AGS. [...]
arXiv:1501.06858 ; FERMILAB-FN-0992-E.
- 2015. - 666 p.
Preprint
6.
LHeC IR Optics Design Integrated Into the HL-LHC-Lattice / Korostelev, M (U. Liverpool (main) ; Cockcroft Inst. Accel. Sci. Tech.) ; Cruz-Alaniz, E (U. Liverpool (main) ; Cockcroft Inst. Accel. Sci. Tech.) ; Newton, D (U. Liverpool (main) ; Cockcroft Inst. Accel. Sci. Tech.) ; Wolski, A (U. Liverpool (main) ; Cockcroft Inst. Accel. Sci. Tech.) ; Bruning, O (CERN) ; Tomas, R (CERN)
The two main drivers for the CDR LHeC IR design were chromaticity and synchrotron radiation. Recently it has been proposed that the LHeC IR proton optics could make use of the Achromatic Telescopic Squeeze (ATS) [1] scheme, which benefits from higher arc beta functions for the correction of chromaticity. [...]
CERN-ACC-2013-0086.- Geneva : CERN, 2013 - 3 p. Fulltext: PDF;
In : 4th International Particle Accelerator Conference, Shanghai, China, 12 - 17 May 2013, pp.1034
7.
Detector magnet measurements / Newton, D (Lancaster U.)
CERN, 1998 Published version from CERN: PDF;
In : CAS - CERN Accelerator School : Measurement and Alignment of Accelerator and Detector Magnets, Anacapri, Italy, 11 - 17 Apr 1997, pp.287-296 (CERN-1998-005)
8.
Using the Am9511 arithmetic processing unit with the Motorola M6800 microprocessor / Reid, M A ; Newton, D A
AERE-R-9360.
- 1979. - 17 p.
Fulltext
9.
Localized States for Elementary Systems / Newton, T D (Palmer Physical Laboratory, Princeton University, Princeton, New Jersey)
1949 - Published in : Rev. Mod. Phys. 21 (1949) 400-406 APS FREE TO READ article: PDF;
10.
Parametrization of the lamp W75 magnetic field / Newton, D ; Osborne, A M ; Pearce, G F
CERN-EP-DHR-76-9.
- 1976. - 14 p.
Fulltext - CERN library copies

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1 Newton, D A
1 Newton, Dave
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1 Newton, David E
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