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27 215 (0,192s)

Result

Quasimonoenergetic proton acceleration via quantum radiative compression

the relativistic plasma produced by radiation-pressure acceleration collides headDense high-energy monoenergetic proton beams are vital for wide applications, thus modern laser plasma-based ion-acceleration method...

Fluids and plasma physics (including surface physics)

  • 2022
  • Jimp
  • Link
Result

Electron beam diagnostics concept for the ELI LUX project

Nowadays the popularity of Laser Wakefield Accelerators (LWFA) is increasingly growing. Although the quality of the beams produced by LWFA is still lower than provided by on conventional accelerators, they have great potent...

Optics (including laser optics and quantum optics)

  • 2018
  • D
  • Link
Result

Electron acceleration in perpendicularly crossed laser beams with following injection in the laser wakefield accelerator

laser beam (MB) colliding in plasma with an additional laser beam (ALB) whichElectrons are accelerated by the plasma wave dragged by a short, intense laser to sustain an accelerating gradient much larger ...

BH - Optika, masery a lasery

  • 2016
  • D
Result

Proton-proton elastic scattering at the LHC energy of root s=7 TeV

Proton-proton elastic scattering has been measured by the TOTEM experiment at the CERN Large Hadron Collider at root s = 7 TeV in dedicated runs with the Roman Pot detectors placed as close as seven times the transverse beam size (s...

BF - Elementární částice a fyzika vysokých energií

  • 2011
  • Jx
  • Link
Result

Dynamics of the interaction of dust particles with the LHC beam

Micrometer-sized dust particles present in the Large Hadron Collider (LHC) beam pipe are believed to have caused many thousands of sporadic beam loss events around beam, or that they are by some other means acc...

Atomic, molecular and chemical physics (physics of atoms and molecules including collision, interaction with radiation, magnetic resonances, Mössbauer effect)

  • 2020
  • Jimp
  • Link
Result

Scientific program of DERICA-prospective accelerator and storage ring facility for radioactive ion beam research

Studies of radioactive ions (RIs) are the most thriving field of low-energy nuclear physics. In this paper, the concept and the scientific agenda of the prospective accelerator and storage ring facility for RI beam (RIB) research ar...

Nuclear physics

  • 2019
  • Jimp
  • Link
Result

Reducing beam-related background on forward physics detectors using crystal collimation at the large hadron collider

Beam collimation in high-energy colliders is customarily carried out by means of massive amorphous absorbers surrounding the circulating beam. Several studies were Hadron Collider that was achieved during a special...

Particles and field physics

  • 2020
  • Jimp
  • Link
Result

HELL: high-energy electrons by laser light, a user-oriented experimental platform at ELI Beamlines

Laser wake field acceleration (LWFA) is an efficient method to accelerate electron beams to high energy. This is a benefit in research infrastructures where such beams to the scientific community both for applied a...

Fluids and plasma physics (including surface physics)

  • 2018
  • Jimp
  • Link
Result

Precision Measurements of Induced Radioactivity and Absolute Luminosity Determination With TPX Detectors in LHC Proton-Proton Collisions at 13 TeV

A network of Timepix (TPX) devices installed in the ATLAS cavern measures the Large Hadron Collider (LHC) luminosity as a stand-alone system. The data were recorded from 13-TeV proton-proton collisions in 2016. Using two TPX devices proton <...

Particles and field physics

  • 2018
  • Jimp
  • Link
Result

Short electron bunches generated by perpendicularly crossing laser pulses.

Optical injection of electrons into a laser wakefield accelerator by a low intensity orthogonally colliding laser pulse is investigated using 2D particle-in-cell part of the bubble. The injected and accelerated electron bun...

Fluids and plasma physics (including surface physics)

  • 2017
  • Jimp
  • Link
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