Coherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillator

A seeded FEL driven by a linac based on super conducting cavities, generating 10 ^8 –10 ^10 coherent photons per shot at 2–5 keV with 0.2–1 MHz of repetition rate, can address the need of a source devoted to fine analysis of matter using the linear spectroscopy technique. The seeding scheme describe...

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Main Authors: V Petrillo, M Opromolla, A Bacci, F Broggi, I Drebot, G Ghiringhelli, E Puppin, M Rossetti Conti, A R Rossi, M Ruijter, S Samsam, A Tagliaferri, G Rossi, L Serafini
Format: Article
Language:English
Published: IOP Publishing 2020-01-01
Series:New Journal of Physics
Subjects:
Online Access:https://doi.org/10.1088/1367-2630/ab9bbf
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author V Petrillo
M Opromolla
A Bacci
F Broggi
I Drebot
G Ghiringhelli
E Puppin
M Rossetti Conti
A R Rossi
M Ruijter
S Samsam
A Tagliaferri
G Rossi
L Serafini
author_facet V Petrillo
M Opromolla
A Bacci
F Broggi
I Drebot
G Ghiringhelli
E Puppin
M Rossetti Conti
A R Rossi
M Ruijter
S Samsam
A Tagliaferri
G Rossi
L Serafini
author_sort V Petrillo
collection DOAJ
description A seeded FEL driven by a linac based on super conducting cavities, generating 10 ^8 –10 ^10 coherent photons per shot at 2–5 keV with 0.2–1 MHz of repetition rate, can address the need of a source devoted to fine analysis of matter using the linear spectroscopy technique. The seeding scheme described hereafter is a multi-stage cascade upshifting the radiation frequency by a factor 20–40. The x-ray range can be achieved with a seed constituted by a coherent flash in the extreme ultraviolet range provided by an FEL oscillator operating at 12–14 nm. The whole chain of x-ray generation is described by means of start-to-end three-dimensional simulations.
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spelling doaj.art-b212d7fc7ef34387abaf87dacb583bb82023-08-08T15:24:53ZengIOP PublishingNew Journal of Physics1367-26302020-01-0122707305810.1088/1367-2630/ab9bbfCoherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillatorV Petrillo0M Opromolla1A Bacci2F Broggi3I Drebot4G Ghiringhelli5https://orcid.org/0000-0003-0867-7748E Puppin6M Rossetti Conti7A R Rossi8M Ruijter9S Samsam10A Tagliaferri11G Rossi12L Serafini13Università degli Studi di Milano , Via Celoria 16, 20133 Milano, Italy; INFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyUniversità degli Studi di Milano , Via Celoria 16, 20133 Milano, Italy; INFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyPolitecnico di Milano , P.zza Leonardo da Vinci, 20133 Milano, ItalyPolitecnico di Milano , P.zza Leonardo da Vinci, 20133 Milano, ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), Italy; Università’La Sapienza’ , Piazzale Aldo Moro, 5, 00185 Roma, ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), Italy; Università’La Sapienza’ , Piazzale Aldo Moro, 5, 00185 Roma, Italy; University of Mohamed V , Rabat, MoroccoPolitecnico di Milano , P.zza Leonardo da Vinci, 20133 Milano, ItalyUniversità degli Studi di Milano , Via Celoria 16, 20133 Milano, ItalyINFN-Sezione di Milano , Via Celoria 16, 20133 Milano, Italy; LASA , Via F. Cervi 201, 20090 Segrate (MI), ItalyA seeded FEL driven by a linac based on super conducting cavities, generating 10 ^8 –10 ^10 coherent photons per shot at 2–5 keV with 0.2–1 MHz of repetition rate, can address the need of a source devoted to fine analysis of matter using the linear spectroscopy technique. The seeding scheme described hereafter is a multi-stage cascade upshifting the radiation frequency by a factor 20–40. The x-ray range can be achieved with a seed constituted by a coherent flash in the extreme ultraviolet range provided by an FEL oscillator operating at 12–14 nm. The whole chain of x-ray generation is described by means of start-to-end three-dimensional simulations.https://doi.org/10.1088/1367-2630/ab9bbffree electron laseroscillatorsuperconducting linac
spellingShingle V Petrillo
M Opromolla
A Bacci
F Broggi
I Drebot
G Ghiringhelli
E Puppin
M Rossetti Conti
A R Rossi
M Ruijter
S Samsam
A Tagliaferri
G Rossi
L Serafini
Coherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillator
New Journal of Physics
free electron laser
oscillator
superconducting linac
title Coherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillator
title_full Coherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillator
title_fullStr Coherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillator
title_full_unstemmed Coherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillator
title_short Coherent, high repetition rate tender x-ray free-electron laser seeded by an extreme ultra-violet free-electron laser oscillator
title_sort coherent high repetition rate tender x ray free electron laser seeded by an extreme ultra violet free electron laser oscillator
topic free electron laser
oscillator
superconducting linac
url https://doi.org/10.1088/1367-2630/ab9bbf
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