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The Modifications of Metallic and Inorganic Materials by Using Energetic Ion/Electron Beams

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

swift heavy ion; YAG (Y3Al5O12); refractive index profiling; synergy effect; optical waveguide; hillocks; ion tracks; ion irradiation; TEM; vanadium alloy; irradiation hardening; radiation damage; electron irradiation; metal surface; sputtering; groove; hole; self-organization; pattern; laser photocathode; pulsed electron sources; pulsed transmission electron microscope; ion beam; copper oxide; chromatic change; photoemission spectrum; beam viewer; light water reactor; zirconium alloys; nuclear fuel cladding; thermal desorption spectroscopy; transmission electron microscopy; high energy irradiation; ion track overlapping; oxides; Monte Carlo simulation for two-dimensional images; lattice structures and magnetic states; binomial and Poisson distribution functions; ion accelerators at WERC; irradiation effects on space electronics; single event; total ionization dose; displacement damage; solar cell; space application; irradiation test; beam condition; degradation; standardization; ISO; high-Tc superconductors; critical current density; flux pinning; heavy-ion irradiation; columnar defects; anisotropy; superconductor; irradiation; critical current; cerium oxide; CeO2; swift heavy ions; phase transition; partially stabilized zirconia; XRD; radiation simulation; ion-track etching; electrodeposition; micro/nano-sized metal cones; template synthesis; electrocatalyst; excited reaction field; transmission electron microscope; nanomaterials; manipulation; nanostructure; Al; Al2O3; accelerator-driven system (ADS); liquid metal corrosion (LMC); lead–bismuth eutectic (LBE); self-ion irradiation; oxygen concentration in LBE; irradiation effect on corrosion behavior; electronic excitation; lattice disordering; electron–lattice coupling; nanopore structure; ceria; molecular dynamics; simulation; structural analysis; defects; n/a

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-3094-9

País de edición

Suiza