Paper | Title | Page |
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THPGW026 | Status of the Horizon 2020 EuPRAXIA Conceptual Design Study | 3638 |
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Funding: This work was supported by the European Union’s Horizon 2020 Research and Innovation programme under grant agreement No. 653782. The Horizon 2020 Project EuPRAXIA (European Plasma Research Accelerator with eXcellence In Applications) is producing a conceptual design report for a highly compact and cost-effective European facility with multi-GeV electron beams accelerated using plasmas. EuPRAXIA will be set up as a distributed Open Innovation platform with two construction sites, one with a focus on beam-driven plasma acceleration (PWFA) and another site with a focus on laser-driven plasma acceleration (LWFA). User areas at both sites will provide access to FEL pilot experiments, positron generation and acceleration, compact radiation sources, and test beams for HEP detector development. Support centres in four different countries will complement the pan-European implementation of this infrastructure. |
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DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2019-THPGW026 | |
About • | paper received ※ 26 April 2019 paper accepted ※ 20 May 2019 issue date ※ 21 June 2019 | |
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THPGW002 | A Passive Plasma Beam Dump Study with Application to EuPRAXIA | 3581 |
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Funding: The author R. P. Nunes acknowledges the financial support provided by FAPERGS. This work presents a study about a passive dumping scheme applied to the beam generated by the accelerator stage of the EuPraxia experiment. Particle-in-cell simulations have been carried out and its results are compared with analytical estimates, showing a reasonable agreement. |
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DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2019-THPGW002 | |
About • | paper received ※ 05 May 2019 paper accepted ※ 22 May 2019 issue date ※ 21 June 2019 | |
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THPGW003 | Energy Loss of an Electron Beam with Gaussian Density Profile Propagating in a Passive Plasma Beam Dump | 3584 |
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Funding: CNPq, and FAPERGS, from Brazil. A semi-analytical 1D model is derived for the total energy loss of an electron beam with Gaussian density profile undergoing a passive plasma beam dump. The model is compared to a previous one, obtained for a half-sine longitudinal density profile. It is shown that both models agree if the beam density profiles are properly matched, and if their sizes are small in comparison to the length of wakefield decelerating length. The beam energy obtained from both models is compared to 1D PIC simulation results. |
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DOI • | reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2019-THPGW003 | |
About • | paper received ※ 09 May 2019 paper accepted ※ 23 May 2019 issue date ※ 21 June 2019 | |
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