Ariniello et al., 2022 - Google Patents

Channeling acceleration in crystals and nanostructures and studies of solid plasmas: New opportunities

Ariniello et al., 2022

View PDF
Document ID
728013100264084054
Author
Ariniello R
Corde S
Davoine X
Ekerfelt H
Fiuza F
Gilljohann M
Gremillet L
Mankovska Y
Piekarz H
Claveria P
Shiltsev V
Taborek P
Tajima T
Publication year
Publication venue
arXiv preprint arXiv:2203.07459

External Links

Snippet

Plasma wakefield acceleration (PWA) has shown illustrious progress over the past two decades of active research and resulted in an impressive demonstration of O (10 GeV) particle acceleration in O (1 m) long single structures. While already potentially sufficient for …
Continue reading at inspirehep.net (PDF) (other versions)

Classifications

    • GPHYSICS
    • G21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
    • G21KTECHNIQUES FOR HANDLING PARTICLES OR IONISING RADIATION NOT OTHERWISE PROVIDED FOR; IRRADIATION DEVICES; GAMMA RAY OR X-RAY MICROSCOPES
    • G21K1/00Arrangements for handling particles or ionizing radiation, e.g. focusing or moderating
    • G21K1/14Arrangements for handling particles or ionizing radiation, e.g. focusing or moderating using charge exchange devices, e.g. for neutralising or changing the sign of the electrical charges of beams

Similar Documents

Publication Publication Date Title
Esarey et al. Synchrotron radiation from electron beams in plasma-focusing channels
Malka et al. Principles and applications of compact laser–plasma accelerators
Lau et al. Nonlinear Thomson scattering: A tutorial
Zhang et al. Particle-in-cell simulation of x-ray wakefield acceleration and betatron radiation in nanotubes
US8787529B2 (en) Compact coherent current and radiation source
Sun et al. Production of polarized particle beams via ultraintense laser pulses: T. Sun et al.
Gilljohann et al. Channeling acceleration in crystals and nanostructures and studies of solid plasmas: new opportunities
Sahai et al. Solid-state tube wakefield accelerator using surface waves in crystals
Das Laser plasma session: Aapps-dpp conference, 12–17 nov 2018, kanazawa
Sahai et al. Schemes of laser muon acceleration: Ultra-short, micron-scale beams
Ariniello et al. Channeling acceleration in crystals and nanostructures and studies of solid plasmas: New opportunities
Sahai et al. PetaVolts per meter Plasmonics: introducing extreme nanoscience as a route towards scientific frontiers
Lei et al. 100 s tev/m-level particle accelerators driven by high-density electron beams in micro structured carbon nanotube forest channel
Cui et al. Generation of ultracollimated polarized attosecond γ-rays via beam instabilities
Shiltsev Ultimate colliders for particle physics: Limits and possibilities
Si et al. Research progress on advanced positron acceleration
Shin et al. TeV/m nano-accelerator: Investigation on feasibility of CNT-channeling acceleration at Fermilab
Cai et al. Correlation between gamma photon emission and magnetic islands in laser-driven plasma channel
Esirkepov et al. Fundamental physics and relativistic laboratory astrophysicswith extreme power lasers
Fallahi et al. Transverse confinement of electron beams in a 2D optical lattice for compact coherent x-ray sources
Sytov et al. Channeling acceleration in crystals and nanostructures and studies of solid plasmas: new opportunities
Resta-López Long-term future particle accelerators
Balakirev et al. Charged particle acceleration by an intense wake-field excited in plasmas by either laser pulse or relativistic electron bunch
Yu et al. Research progress of X/γ photon emission in laser-plasma interaction
Shin et al. Ultra-high gradient channeling acceleration in nanostructures: Design/progress of proof-of-concept (POC) experiments