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005     20250729163423.0
024 7 _ |a 10.1109/AAC.2018.8659395
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024 7 _ |a Kuropka:2018sww
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024 7 _ |a inspire:1741352
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037 _ _ |a PUBDB-2020-02255
041 _ _ |a English
100 1 _ |a Kuropka, Willi
|0 P:(DE-H253)PIP1030512
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|e Corresponding author
111 2 _ |a 2018 IEEE Advanced Accelerator Concepts Workshop (AAC)
|g AAC 2018
|c Breckenridge
|d 2018-08-12 - 2018-08-17
|w USA, Co
245 _ _ |a Plans for Dielectric Laser Accelerators at SINBAD
260 _ _ |c 2019
|b IEEE
295 1 0 |a 2018 IEEE Advanced Accelerator Concepts Workshop (AAC) : [Proceedings] - IEEE, 2018. - ISBN 978-1-5386-7721-6 - doi:10.1109/AAC.2018.8659395
300 _ _ |a 1-4
336 7 _ |a CONFERENCE_PAPER
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336 7 _ |a Conference Paper
|0 33
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336 7 _ |a INPROCEEDINGS
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336 7 _ |a conferenceObject
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336 7 _ |a Output Types/Conference Paper
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336 7 _ |a Contribution to a conference proceedings
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336 7 _ |a Contribution to a book
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490 0 _ |a Acceleration
|2 Author
490 0 _ |a Free electron lasers
|2 Author
490 0 _ |a Linear particle accelerator
|2 Author
490 0 _ |a Particle accelerators
|2 Author
490 0 _ |a Semiconductor lasers
|2 Author
490 0 _ |a Modulation
|2 Author
490 0 _ |a accelerator RF systems
|2 Author
490 0 _ |a beam handling techniques
|2 Author
490 0 _ |a electron accelerators
|2 Author
490 0 _ |a electron beams
|2 Author
490 0 _ |a free electron lasers
|2 Author
490 0 _ |a linear accelerators
|2 Author
490 0 _ |a particle beam bunching
|2 Author
490 0 _ |a particle beam injection
|2 Author
490 0 _ |a plasma accelerators
|2 Author
490 0 _ |a synchrotrons
|2 Author
490 0 _ |a wakefield accelerators
|2 Author
490 0 _ |a dielectric laser accelerators
|2 Author
490 0 _ |a CHip International program collaboration
|2 Author
490 0 _ |a suitable laser system
|2 Author
490 0 _ |a microbunch trains
|2 Author
490 0 _ |a Accelerator Research Experiment
|2 Author
490 0 _ |a SINBAD linear accelerator
|2 Author
490 0 _ |a high-quality electron bunches
|2 Author
490 0 _ |a phase-synchronous microbunch train
|2 Author
490 0 _ |a accelerating fields
|2 Author
490 0 _ |a conventional radiofrequency accelerators
|2 Author
490 0 _ |a microbunching scheme
|2 Author
490 0 _ |a seeded free-electron-laser applications
|2 Author
490 0 _ |a laser modulator
|2 Author
490 0 _ |a fs electron bunch
|2 Author
490 0 _ |a showing different spectra
|2 Author
490 0 _ |a DESY
|2 Author
490 0 _ |a long-term accelerator development
|2 Author
490 0 _ |a research facility
|2 Author
490 0 _ |a high gradient particle acceleration technologies
|2 Author
490 0 _ |a plasma
|2 Author
490 0 _ |a dielectric laser based types
|2 Author
490 0 _ |a DLA
|2 Author
490 0 _ |a ACHIP
|2 Author
490 0 _ |a SINBAD
|2 Author
500 _ _ |a Waiting for fulltext
520 _ _ |a Short and INnovative Bunches and Accelerators At Desy (SINBAD) at Deutsches Elektronen Synchrotron (DESY) is a dedicated long-term accelerator development and research facility. It is foreseen to house several research efforts towards novel high gradient particle acceleration technologies including THz, plasma and dielectric laser based types. A brief overview will be provided. Among the candidates for future applications are dielectric laser accelerators (DLA). Within the Accelerator on a CHip International program (ACHIP) collaboration funded by Gordon and Betty Moore Foundation, grating type DLAs are being investigated with the goal to build a 1 MeV `shoe box' table top accelerator, only requiring a suitable laser system as input. To achieve this goal, the creation and handling of micro-bunch trains in the regime suitable for DLA has to be researched. The Accelerator Research Experiment at SINBAD (ARES) linear accelerator will to deliver very low-emittance, ultra-short, high-quality electron bunches to be used to investigate these topics. Two experimental approaches towards these goals are presented. One is focused on producing and injecting a phase-synchronous micro-bunch train into a DLA. This experiment is suitable for controlling the phase between electron bunches and the accelerating fields comparable to conventional radiofrequency accelerators. A micro-bunching scheme from seeded free-electron-laser applications using a laser modulator and a magnetic chicane is foreseen to be implemented. The laser for the modulator will also drive the DLA, connecting the spacing in the micro-bunch to the periodicity of the accelerator. An additional approach is focused towards injection of a fs electron bunch into a DLA, probing the accelerating fields and showing different spectra of the particles correlated to the injection phase. The general limitations will be also be discussed. First experiments are planned for spring 2019.
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536 _ _ |a ACHIP - Laser Accelerators on a Chip (ACHIP_2015-10-01)
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588 _ _ |a Dataset connected to CrossRef Conference
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700 1 _ |a Assmann, Ralph
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700 1 _ |a Burkart, Florian
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700 1 _ |a Cankaya, Huseyin
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700 1 _ |a Dorda, Ulrich
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700 1 _ |a Hartl, Ingmar
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700 1 _ |a Kartner, Franz X.
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700 1 _ |a Lemery, Francois
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700 1 _ |a Marchetti, Barbara
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700 1 _ |a Mayet, Frank
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773 _ _ |a 10.1109/AAC.2018.8659395
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910 1 _ |a External Institute
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Centre for Free-Electron Laser Science
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910 1 _ |a External Institute
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910 1 _ |a External Institute
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Centre for Free-Electron Laser Science
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a External Institute
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913 1 _ |a DE-HGF
|b Forschungsbereich Materie
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920 1 _ |0 I:(DE-H253)MPY1-20170908
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920 1 _ |0 I:(DE-H253)UNI_EXP-20120731
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