论文标题

在晶体和纳米结构中引导加速度以及固体等离子体的研究:新机会

Channeling Acceleration in Crystals and Nanostructures and Studies of Solid Plasmas: New Opportunities

论文作者

Gilljohann, Max F., Mankovska, Yuliia, Claveria, Pablo San Miguel, Sytov, Alexei, Bandiera, Laura, Ariniello, Robert, Davoine, Xavier, Ekerfelt, Henrik, Fiuza, Frederico, Gremillet, Laurent, Knetsch, Alexander, Martinez, Bertrand, Matheron, Aimé, Piekarz, Henryk, Storey, Doug, Taborek, Peter, Tajima, Toshiki, Shiltsev, Vladimir, Corde, Sébastien

论文摘要

血浆韦克赛场加速度(PWFA)表现出了杰出的进步,并在米长的单结构中表现出了令人印象深刻的GEV颗粒加速度。为了在1 TEV到10 TEV范围内达到更高的能量,一个有希望的方案是在晶体或纳米结构内引导固体血浆中的加速度。 E336实验研究了射线 - 纳米核心与高度压缩电子束的相互作用,可在facet-II加速器上使用。此外,这些研究还涉及对超密集等离子体中光束质量不稳定性动力学的深入研究,其在碳纳米管和晶体(例如碳纳米管和晶体)中的发育和抑制以及其横向调节电子束的潜在用途。

Plasma wakefield acceleration (PWFA) has shown illustrious progress and resulted in an impressive demonstration of tens of GeV particle acceleration in meter-long single structures. To reach even higher energies in the 1 TeV to 10 TeV range, a promising scheme is channeling acceleration in solid-density plasmas within crystals or nanostructures. The E336 experiment studies the beam-nanotarget interaction with the highly compressed electron bunches available at the FACET-II accelerator. These studies furthermore involve an in-depth research on dynamics of beam-plasma instabilities in ultra-dense plasma, its development and suppression in structured media like carbon nanotubes and crystals, and its potential use to transversely modulate the electron bunch.

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