Investigation of Staged Laser-Plasma Acceleration
Book information
Description
This thesis establishes an exciting new beginning for Laser Plasma Accelerators (LPAs) to further develop toward the next generation of compact high energy accelerators. Design, installation and commissioning of a new experimental setup at LBNL played an important role and are detailed through three critical components: e-beam production, reflection of laser pulses with a plasma mirror and large wake excitation below electron injection threshold. Pulses from a 40 TW peak power laser system were split into a 25 TW pulse and a 15 TW pulse. The first pulse was used for e-beam production in the first module and the second pulse was used for wake excitation in the second module to post-accelerate the e-beam. As a result, reliable e-beam production and efficient wake excitation necessary for the staged acceleration were independently demonstrated. These experiments have laid the foundation for future staging experiments at the 40 TW peak power level.
Similar books
Touschek Lifetime Studies and Optimization of the European Synchrotron Radiation Facility: Present and Upgrade Lattice
2016 · PDF
Advanced Radiation Sources and Applications: Proceedings of the NATO Advanced Research Workshop, held in Nor-Hamberd, Yerevan, Armenia, August 29 - September 2, 2004
2006 · PDF
Lasers and Light. Readings from Scientific American. With an introduction by Arthur L. Schawlow
1969 · PDF
Biomedical Optical Sensors: Differentiators for Winning Technologies
2020 · PDF
Rotating Machinery, Optical Methods & Scanning LDV Methods, Volume 6: Proceedings of the 38th IMAC, A Conference and Exposition on Structural Dynamics 2020
2020 · PDF
Laser Doppler Vibrometry for Non-Contact Diagnostics
2020 · PDF
The Physics of Laser Plasmas and Applications - Volume 1: Physics of Laser Matter Interaction
2020 · PDF
Polaritonic Chemistry: Manipulating Molecular Structure Through Strong Light–Matter Coupling
2020 · PDF