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15 research outcomes, page 1 of 2
  • publication . Preprint . Other literature type . Article . 2019
    Open Access English
    Authors:
    Scherkl, Paul; Knetsch, Alexander; Heinemann, Thomas; Sutherland, Andrew; Habib, Ahmad Fahim; Karger, Oliver; Ullmann, Daniel; Beaton, Andrew; Kirwan, Gavin; Manahan, Grace; ...
    Project: EC | EuPRAXIA (653782), EC | LASERLAB-EUROPE (284464), EC | EUCARD-2 (312453)

    Modern particle accelerators and their applications increasingly rely on precisely coordinated interactions of intense charged particle and laser beams. Femtosecond-scale synchronization alongside micrometre-scale spatial precision are essential e.g. for pump-probe expe...

  • publication . Article . Preprint . 2018
    Open Access
    Authors:
    Anna Giribono; Francesco Filippi; Fabio Villa; Enrica Chiadroni;
    Publisher: Elsevier BV
    Project: EC | EuPRAXIA (653782), EC | EUCARD-2 (312453)

    Abstract The current activity of the SPARC_LAB test-facility is focused on the realization of plasma-based acceleration experiments with the aim to provide accelerating field of the order of several GV/m while maintaining the overall quality (in terms of energy spread a...

  • publication . Article . Preprint . Other literature type . 2019
    Open Access
    Authors:
    Pompili, R.; Chiadroni, E.; Cianchi, A.; Del Dotto, A.; Faillace, L.; Ferrario, M.; Iovine, P.; Masullo, M. R.;
    Publisher: American Physical Society (APS)
    Project: EC | EuPRAXIA (653782), EC | EUCARD-2 (312453)

    Plasma wakefield acceleration represents one of the most promising techniques able to overcome the limits of conventional rf technology and make possible the development of compact accelerators. With respect to laser-driven schemes, the particle beam-driven scenario is ...

  • publication . Article . Preprint . 2020
    Open Access
    Authors:
    M. M. R. Chishti; D. O’Donnell; G. Battaglia; M. Bowry; D. A. Jaroszynski; B. S. Nara Singh; M. Scheck; P. Spagnoletti; J. F. Smith;
    Publisher: Springer Science and Business Media LLC
    Project: EC | EuPRAXIA (653782), EC | LASERLAB-EUROPE (654148), EC | ARIES (730871), RCUK | CRITICAL MASS: Collective... (EP/J018171/1), RCUK | Application of Next Gener... (EP/J500094/1), EC | EUCARD-2 (312453)

    It is now well established that atomic nuclei composed of certain combinations of protons and neutrons can adopt reflection-asymmetric, or octupole-deformed, shapes at low excitation energy. These nuclei show promise in the search for a permanent atomic electric dipole ...

  • publication . Article . 2017
    Open Access English
    Authors:
    Samuel R. Yoffe;
    Project: EC | EuPRAXIA (653782), EC | LASERLAB-EUROPE (654148), EC | EUCARD-2 (312453)

    Self-injection in a laser-plasma wakefield accelerator (LWFA) is usually achieved by increasing the laser intensity until the threshold for injection is exceeded. Alternatively, the velocity of the bubble accelerating structure can be controlled using plasma density ram...

  • publication . Other literature type . Article . Preprint . 2017
    Open Access
    Authors:
    Alberto Marocchino; Riccardo Pompili; Giovanni Castorina;
    Publisher: AIP Publishing
    Project: EC | EUCARD-2 (312453), EC | EuPRAXIA (653782)

    A new method able to transport charged particle beams along a curved path is presented. It is based on curved capillary-discharge waveguides where the induced azimuthal magnetic field is used to focus the beam and, at the same time, keep it close to the capillary axis. ...

  • publication . Article . Preprint . 2018
    Open Access English
    Authors:
    Anna Giribono; Fabio Villa; Francesco Filippi; Enrica Chiadroni;
    Publisher: Elsevier
    Project: EC | EuPRAXIA (653782), EC | EUCARD-2 (312453)

    Abstract Beam injection and extraction from a plasma module is still one of the crucial aspects to solve in order to produce high quality electron beams with a plasma accelerator. Proper matching conditions require to focus the incoming high brightness beam down to few ...

  • publication . Article . Preprint . Other literature type . 2019
    Open Access
    Authors:
    Enrica Chiadroni;
    Publisher: American Physical Society (APS)
    Project: EC | EuPRAXIA (653782), EC | EUCARD-2 (312453)

    : The development of compact accelerator facilities providing high-brightness beams is one of the most challenging tasks in the field of next-generation compact and cost affordable particle accelerators, to be used in many fields for industrial, medical, and research ap...

  • publication . Article . Other literature type . 2019
    Open Access English
    Authors:
    A. E. Hussein; N. Senabulya; Y. Ma; M. J. V. Streeter; B. Kettle; S. J. D. Dann; F. Albert; N. Bourgeois; S. Cipiccia; J. M. Cole; ...
    Project: NSERC , RCUK | Cockcroft Institute (ST/P002056/1), EC | LASERLAB-EUROPE (654148), EC | EuPRAXIA (653782), RCUK | Application of Next Gener... (EP/J500094/1), EC | EUCARD-2 (312453), RCUK | Lab in a bubble (EP/N028694/1), RCUK | CRITICAL MASS: Collective... (EP/J018171/1), FCT | POCI/FIS/59574/2004 (59574), RCUK | The John Adams Institute ... (ST/P000835/1)

    Laser-wakefield accelerators (LWFAs) are high acceleration-gradient plasma-based particle accelerators capable of producing ultra-relativistic electron beams. Within the strong focusing fields of the wakefield, accelerated electrons undergo betatron oscillations, emitti...

  • publication . Article . 2017
    Open Access
    Authors:
    Gregor H Welsh; Feiyu Li;
    Project: RCUK | Application of Next Gener... (EP/J500094/1), EC | EUCARD-2 (312453), RCUK | Lab in a bubble (EP/N028694/1), EC | LASERLAB-EUROPE (284464), RCUK | West of Scotland Supercom... (EP/K000586/1), EC | EuPRAXIA (653782), RCUK | CRITICAL MASS: Collective... (EP/J018171/1), EC | LASERLAB-EUROPE (654148)

    Laser-wakefield accelerators are compact devices capable of delivering ultra-short electron bunches with pC-level charge and MeV-GeV energy by exploiting the ultra-high electric fields arising from the interaction of intense laser pulses with plasma. We show experimenta...

15 research outcomes, page 1 of 2
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