Interaction of an intense relativistic electron beam with target material
Journal Article
·
· Chin. Phys.; (United States)
OSTI ID:6827408
The classical plasma theory, two-stream instability theory, and magnetic enhancement effect have been used in calculating the range and deposition power of an intense relativistic electron beam in a target material. It is recognized that anomalous absorption is the major energy absorption mechanism for an intense relativistic electron beam in a target material. With the two-stream instability and magnetic enhancement effect taken into account, experimental results can be interpreted rather satisfactorily.
- Research Organization:
- Institute of Atomic Energy, Academic Sinica
- OSTI ID:
- 6827408
- Journal Information:
- Chin. Phys.; (United States), Journal Name: Chin. Phys.; (United States) Vol. 2:4; ISSN CHPHD
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
654001* -- Radiation & Shielding Physics-- Radiation Physics
Shielding Calculations & Experiments
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ABSORPTION
BEAMS
CHARGED-PARTICLE TRANSPORT
ELECTRON BEAMS
ELECTRONS
ELEMENTARY PARTICLES
ENERGY RANGE
FERMIONS
INSTABILITY
LEPTON BEAMS
LEPTONS
PARTICLE BEAMS
PLASMA INSTABILITY
PLASMA MICROINSTABILITIES
RADIATION TRANSPORT
RANGE
RELATIVISTIC RANGE
TARGETS
TWO-STREAM INSTABILITY
Shielding Calculations & Experiments
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ABSORPTION
BEAMS
CHARGED-PARTICLE TRANSPORT
ELECTRON BEAMS
ELECTRONS
ELEMENTARY PARTICLES
ENERGY RANGE
FERMIONS
INSTABILITY
LEPTON BEAMS
LEPTONS
PARTICLE BEAMS
PLASMA INSTABILITY
PLASMA MICROINSTABILITIES
RADIATION TRANSPORT
RANGE
RELATIVISTIC RANGE
TARGETS
TWO-STREAM INSTABILITY