The determination of the propagation parameters of a laser pulse across plasma and its various effects heavily relies on the plasma density. Consequently, a ripple density plasma …
Abstract Laser Wakefield Acceleration (LWFA) has emerged as a groundbreaking approach for generating ultra-high energy electron beams over short distances, revolutionizing the …
In this research, the process of electron acceleration and wakefield generation by Gaussian- like (GL), super-Gaussian (SG) and Bessel–Gaussian (BG) laser pulses through cold …
To obtain energy-efficient electron acceleration, several Gaussian pulse profiles like Bessel- Gaussian, super-Gaussian, and cosine-Gaussian are studied analytically. In this series, we …
The phenomenon of laser wakefield acceleration is one of the prominent mechanisms to accelerate electrons to very high energies within a very small propagation distance. In this …
This study focuses on electron acceleration and wakefield produced by Gaussian and Super- Gaussian (SG) laser pulses through plasma medium in the attendance of an external …
Energy enhancement of electrons is a promising field of research due to its application in various fields of scientific research. The role of various parameters like plasma density …
We demonstrate the charge enhancement of the electron bunch using a flattened Gaussian laser pulse in laser wakefield accelerations. In laser wakefield accelerations, the change in …
S Babu, R Jeet, A Kumar, A Kumar, A Varma - Iranian Journal of Science …, 2022 - Springer
A high-frequency X-mode laser is susceptible to parametric decay into a lower hybrid wave and a sideband X-mode laser in magnetized plasma. The electron density perturbation …