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Crunch-in regime - Non-linearly driven hollow-channel plasma
File | Description | Size | Format | |
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1610.03289.pdf | Working paper | 672.38 kB | Adobe PDF | View/Open |
Title: | Crunch-in regime - Non-linearly driven hollow-channel plasma |
Authors: | Sahai, A |
Item Type: | Working Paper |
Abstract: | Plasma wakefields driven inside a hollow-channel plasma are significantly different from those driven in a homogeneous plasma. This work investigates the scaling laws of the accelerating and focusing fields in the "crunch-in" regime. This regime is excited due to the collapse of the electron-rings from the channel walls onto the propagation axis of the energy-source, in its wake. This regime is thus the non-linearly driven hollow channel, since the electron-ring displacement is of the order of the channel radius. We present the properties of the coherent structures in the "crunch-in" regime where the channel radius is matched to the beam properties such that channel-edge to on-axis collapse time has a direct correspondence to the energy source intensity. We also investigate the physical mechanisms that underlie the "crunch-in" wakefields by tuning the channel radius. Using a theoretical framework and results from PIC simulations the possible applications of the "crunch-in" regime for acceleration of positron beams with collider-scale parameters is presented. |
Issue Date: | 11-Oct-2016 |
URI: | http://hdl.handle.net/10044/1/50067 |
Publisher: | ArXiv |
Copyright Statement: | © 2016 The Author |
Appears in Collections: | Plasma Physics Faculty of Natural Sciences |