학술논문

Terahertz IFEL/FEL Microbunching for Plasma Beatwave Accelerators
Document Type
Conference
Source
Proceedings of the 2005 Particle Accelerator Conference Particle Accelerator Conference, 2005. PAC 2005. Proceedings of the. :2812-2814 2005
Subject
Fields, Waves and Electromagnetics
Engineered Materials, Dielectrics and Plasmas
Nuclear Engineering
Robotics and Control Systems
Plasma accelerators
Acceleration
Free electron lasers
Undulators
Electron accelerators
Finite impulse response filter
Power generation
Frequency
Gallium arsenide
Plasma waves
Language
ISSN
1944-4680
2152-9582
Abstract
In order to obtain monoenergetic acceleration of electrons, phase-locked injection using electron microbunches shorter than the accelerating structure is necessary. For a laser-driven plasma beatwave accelerator experiment, we propose to microbunch the electrons by interaction with terahertz (THz) radiation in an undulator via two mechanisms– Free Electron Laser (FEL) and Inverse Free Electron Laser (IFEL). Since the high power FIR radiation will be generated via difference frequency mixing in GaAs by the same CO 2 beatwave used to drive the plasma wave, electrons could be phase-locked and pre-bunched into a series of microbunches separated with the same periodicity. Here we examine the criteria for undulator design and present simulation results for both IFEL and FEL approaches. Using different CO 2 laser lines, electrons can be microbunched with different periodicity 300 –100 μm suitable for injection into plasma densities in the range 10 16 – 10 17 cm -3 , respectively. The requirements on the THz radiation power and the electron beam qualities are also discussed.