Theoretical and Experimental Studies on Steady-State Microbunching
Material type:![Text](/opac-tmpl/lib/famfamfam/BK.png)
- text
- computer
- online resource
- 978-981-99-5800-9
- 9789819957996
- 9789819958009
- Atomic & molecular physics
- Electronic devices & materials
- Optical physics
- Particle & high-energy physics
- Angle-resolved photoemission Spectroscopy
- Coherent Radiation
- EUV Lithography
- Free-electron Laser
- Longitudinal Strong Focusing
- Particle Accelerator
- Radiation Fluctuation
- Synchrotron Radiation
- Transverse-longitudinal Coupling
- Ultralow Longitudinal Emittance
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OPJGU Sonepat- Campus | E-Books Open Access | Available |
Open Access Unrestricted online access star
This open access book is devoted to the theoretical and experimental studies of a novel accelerator light source mechanism called steady-state microbunching (SSMB) which promises high-power, high-repetition rate, narrow-band coherent radiation in an electron storage ring. The contribution of this dissertation consists of three parts: first, answers the question of how to realize SSMB from a beam dynamics perspective; second, reveals what radiation characteristics can we obtain from the formed SSMB; and third, experimentally demonstrates the working mechanism of SSMB in a real machine for the first time. The highlights of this book can be summarized as: Presents the first proof-of-principle experiment of a promising accelerator light source mechanism; Covers precision longitudinal and transverse-longitudinal coupling dynamics in a storage ring; Provides useful formulas and example parameters for high-power infrared, EUV and soft X-ray light source design.
National Natural Science Foundation of China
Creative Commons by/4.0/ cc
http://creativecommons.org/licenses/by/4.0/
English
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