Radiation in oriented crystals: Innovative application to future positron sources

Fuente: arXiv
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Autores principales: Soldani, Mattia, Alharthi, Fahad, Bandiera, Laura, Canale, Nicola, Cavoto, Gianluca, Chaikovska, Iryna, Chehab, Robert, Guidi, Vincenzo, Haurylavets, Viktar, Mazzolari, Andrea, Negrello, Riccardo, Paternò, Gianfranco, Romagnoni, Marco, Sytov, Alexei, Tikhomirov, Victor
Formato: Preprint
Publicado: 2024
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author Soldani, Mattia
Alharthi, Fahad
Bandiera, Laura
Canale, Nicola
Cavoto, Gianluca
Chaikovska, Iryna
Chehab, Robert
Guidi, Vincenzo
Haurylavets, Viktar
Mazzolari, Andrea
Negrello, Riccardo
Paternò, Gianfranco
Romagnoni, Marco
Sytov, Alexei
Tikhomirov, Victor
author_facet Soldani, Mattia
Alharthi, Fahad
Bandiera, Laura
Canale, Nicola
Cavoto, Gianluca
Chaikovska, Iryna
Chehab, Robert
Guidi, Vincenzo
Haurylavets, Viktar
Mazzolari, Andrea
Negrello, Riccardo
Paternò, Gianfranco
Romagnoni, Marco
Sytov, Alexei
Tikhomirov, Victor
contents It has been known since decades that the alignment of a beam of high-energy electrons with particular crystal directions involves a significant increase of bremsstrahlung radiation emission. This enhancement lies at the conceptual foundation of innovative positron source schemes for future lepton colliders. In particular, the so-called hybrid scheme makes use of a heavy-metal radiator in crystalline form, which is then followed by an amorphous metallic converter for positron generation from electrons by means of a two-step electromagnetic process. This work presents the most recent simulation results obtained on the development of a hybrid positron source for the FCC-$ee$ from the standpoint of the features of both the crystalline radiator and the amorphous converter.
format Preprint
id arxiv_https___arxiv_org_abs_2401_03886
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Radiation in oriented crystals: Innovative application to future positron sources
Soldani, Mattia
Alharthi, Fahad
Bandiera, Laura
Canale, Nicola
Cavoto, Gianluca
Chaikovska, Iryna
Chehab, Robert
Guidi, Vincenzo
Haurylavets, Viktar
Mazzolari, Andrea
Negrello, Riccardo
Paternò, Gianfranco
Romagnoni, Marco
Sytov, Alexei
Tikhomirov, Victor
Accelerator Physics
High Energy Physics - Experiment
It has been known since decades that the alignment of a beam of high-energy electrons with particular crystal directions involves a significant increase of bremsstrahlung radiation emission. This enhancement lies at the conceptual foundation of innovative positron source schemes for future lepton colliders. In particular, the so-called hybrid scheme makes use of a heavy-metal radiator in crystalline form, which is then followed by an amorphous metallic converter for positron generation from electrons by means of a two-step electromagnetic process. This work presents the most recent simulation results obtained on the development of a hybrid positron source for the FCC-$ee$ from the standpoint of the features of both the crystalline radiator and the amorphous converter.
title Radiation in oriented crystals: Innovative application to future positron sources
topic Accelerator Physics
High Energy Physics - Experiment
url https://arxiv.org/abs/2401.03886