Average penetration depth of electrons in a dielectric crystal
Journal Article
·
· Sov. Phys. - Tech. Phys. (Engl. Transl.); (United States)
OSTI ID:5383076
Transmission and backscattering of electrons in crystals are greatly influenced by channel effects. The purpose of the present work is to attempt to determine how channeling influences the average penetration depth (mean range) of electrons in a sandwich structure consisting of a massive rock salt crystal whose surface is coated by a thin single crystal layer of copper. (AIP)
- Research Organization:
- M. I. Kalinin Polytechnic Institute, Leningrad
- OSTI ID:
- 5383076
- Journal Information:
- Sov. Phys. - Tech. Phys. (Engl. Transl.); (United States), Journal Name: Sov. Phys. - Tech. Phys. (Engl. Transl.); (United States) Vol. 28:6; ISSN SPTPA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360605* -- Materials-- Radiation Effects
ALKALI METAL COMPOUNDS
BACKSCATTERING
BEAMS
CHANNELING
CHLORIDES
CHLORINE COMPOUNDS
COLLISIONS
COPPER
DEPOSITION
DIELECTRIC MATERIALS
DIMENSIONS
ELECTRON BEAMS
ELECTRON CHANNELING
ELECTRON COLLISIONS
ELEMENTS
ENERGY RANGE
EPITAXY
HALIDES
HALOGEN COMPOUNDS
KEV RANGE
KEV RANGE 10-100
LAYERS
LEPTON BEAMS
MATERIALS
METALS
PARTICLE BEAMS
PENETRATION DEPTH
SCATTERING
SODIUM CHLORIDES
SODIUM COMPOUNDS
SURFACE COATING
THICKNESS
TRANSITION ELEMENTS
TRANSMISSION
360605* -- Materials-- Radiation Effects
ALKALI METAL COMPOUNDS
BACKSCATTERING
BEAMS
CHANNELING
CHLORIDES
CHLORINE COMPOUNDS
COLLISIONS
COPPER
DEPOSITION
DIELECTRIC MATERIALS
DIMENSIONS
ELECTRON BEAMS
ELECTRON CHANNELING
ELECTRON COLLISIONS
ELEMENTS
ENERGY RANGE
EPITAXY
HALIDES
HALOGEN COMPOUNDS
KEV RANGE
KEV RANGE 10-100
LAYERS
LEPTON BEAMS
MATERIALS
METALS
PARTICLE BEAMS
PENETRATION DEPTH
SCATTERING
SODIUM CHLORIDES
SODIUM COMPOUNDS
SURFACE COATING
THICKNESS
TRANSITION ELEMENTS
TRANSMISSION