Paper | Title | Other Keywords | Page |
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MOPGW005 | Space-Charge Potential for Elliptical Beams | space-charge, focusing, proton | 69 |
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This work is motivated by the weak-strong beam-beam effect as occurs in colliding charged-particle beams. We consider beams with elliptical cross section and power law binomial forms for the density distribution. We demonstrate explicitly how to construct analytically the space-charge potential inside the ’strong’ beam. This is essential to the program of calculating beam-beam effects for non-gaussian beams. | |||
DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2019-MOPGW005 | ||
About • | paper received ※ 19 May 2019 paper accepted ※ 22 May 2019 issue date ※ 21 June 2019 | ||
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MOPMP039 | Developments in the Experimental Interaction Regions of the High Energy LHC | dipole, luminosity, dynamic-aperture, shielding | 532 |
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Funding: Work supported by the Swiss institute for Accelerator Research and Technology , CHART. The High Energy LHC (HE-LHC) aims to collide 13.5 TeV protons in two high luminosity experiments and two low luminosity experiments. In the following, the recent updates in the two high luminosity experimental interaction regions (EIR) of the HE-LHC will be illustrated. These EIR aim to focus the beams to a β* of 0.45 m at the interaction point (IP) to achieve a lifetime integrated luminosity of 10 ab-1. On top of the triplet optics designed to achieve this, it will present energy deposition driven separation dipole designs, optics solutions for the matching section and dispersion suppressors as well as studies involving the integration into the lattice options. In particular it will outline geometric considerations, spurious dispersion suppression as well as results from dynamic aperture studies. |
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DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2019-MOPMP039 | ||
About • | paper received ※ 14 May 2019 paper accepted ※ 20 May 2019 issue date ※ 21 June 2019 | ||
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WEYYPLM3 | First Results of the Compensation of the Beam-Beam Effect with DC Wires in the LHC | experiment, operation, collider, simulation | 2262 |
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The compensation of the long-range beam-beam interactions using DC wires is presently under study as an option for enhancing the machine performance in the frame of the High-Luminosity LHC project (HL-LHC). The original idea dates back more than 15 years. After the installation of four wire prototypes in the LHC in 2018, a successful experimental campaign was performed during the last months. The experimental setup and the main results are reported in this paper. | |||
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Slides WEYYPLM3 [6.371 MB] | ||
DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2019-WEYYPLM3 | ||
About • | paper received ※ 06 May 2019 paper accepted ※ 22 May 2019 issue date ※ 21 June 2019 | ||
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WEPTS005 | Long Range Beam-Beam Tune Shifts & Wire Compensation | site, closed-orbit, dipole, quadrupole | 3092 |
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The weak-strong model subjects the test particle in the weak beam to transverse impulses from the strong beam, resulting in betatron tune shifts. We give analytic formulae for small amplitude and asymptotic shifts for three cases: short-range, long-range, and wire compensation; and optimize the latter to minimize the non-linear tune spreads. | |||
DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2019-WEPTS005 | ||
About • | paper received ※ 19 May 2019 paper accepted ※ 22 May 2019 issue date ※ 21 June 2019 | ||
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