scholarly journals Parallel-plate waveguides for terahertz-driven MeV electron bunch compression

2019 ◽  
Vol 27 (17) ◽  
pp. 23791 ◽  
Author(s):  
Mohamed A. K. Othman ◽  
Matthias C. Hoffmann ◽  
Michael E. Kozina ◽  
X. J. Wang ◽  
R. K. Li ◽  
...  
Author(s):  
Mohamed A. K. Othman ◽  
Matthias C. Hoffmann ◽  
Renkai Li ◽  
Emilio A. Nanni ◽  
X. J. Wang

Author(s):  
Mohamed A.K. Othman ◽  
Annika E. Gabriel ◽  
Emma C. Snively ◽  
Michael E. Kozina ◽  
Xiaozhe Shen ◽  
...  

2013 ◽  
Vol 79 (2) ◽  
pp. 143-152 ◽  
Author(s):  
N. E. ANDREEV ◽  
V. E. BARANOV ◽  
B. CROS ◽  
G. MAYNARD ◽  
P. MORA ◽  
...  

AbstractFor the considered scheme of the external electron bunch injection in front of a laser pulse, the influence of the nonlinear driving laser pulse dynamics and electron bunch self-action to the processes of electron bunch compression and acceleration in the laser wakefield is analyzed. Self-consistent modelling results confirm that the nonlinear laser pulse dynamics limits the bunch compression due to variations of the phase velocity of the wake. A growth of the injected bunch charge leads to some extent to an increase of the trapped and accelerated bunch charge and to decrease of the trapped bunch radius and emittance due to increased self-focusing bunch. The three-dimensional theoretical model is elaborated and used to describe the propagation of laser pulses in dielectric capillary waveguides under imperfect coupling and focusing conditions with broken cylindrical symmetry. The role of cone entrances to the cylindrical part of a capillary is analyzed, and it is demonstrated that matching cones can considerably increase the transmission of laser pulses through the capillary, but cannot mitigate the requirements on the precision of the laser pulse focusing into a capillary. In order to avoid a speckle structure and strong transverse gradients of the fields, which can prevent the process of regular electron bunch acceleration, one has to ensure a small laser angle of incidence into the capillary not exceeding 1 mrad.


Author(s):  
W. van Dijk ◽  
M. J. van der Wiel ◽  
G. J. H. Brussaard

2021 ◽  
Author(s):  
Dinh Nguyen ◽  
Petr Anisimov ◽  
Nicole Neveu

Author(s):  
N.E. Andreev ◽  
V.E. Baranov ◽  
B. Cros ◽  
V.E. Fortov ◽  
S.V. Kuznetsov ◽  
...  

2017 ◽  
Vol 35 (4) ◽  
pp. 569-573 ◽  
Author(s):  
N.E. Andreev ◽  
V.E. Baranov ◽  
H.H. Matevosyan

AbstractThe processes of trapping, compression, and acceleration of short electron bunches externally injected into the wakefields generated by intense femtosecond laser pulse in a plasma channel are analyzed and optimized. The influence of the laser non-linear dynamics to the longitudinal bunch compression and impact of the beam loading effect (self-action of the bunch charge) to the finite energy and the energy spread of the accelerated electrons are investigated. The limitations to the charge of accelerated electron bunch determined by the requirement of a small width of the electron energy distribution of the bunch are found.


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