Swift heavy ion irradiation of pyrochlore oxides: Electronic energy loss threshold for latent track formation
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference23 articles.
1. Nuclear waste disposal—pyrochlore (A2B2O7): Nuclear waste form for the immobilization of plutonium and “minor” actinides
2. Radiation stability of gadolinium zirconate: A waste form for plutonium disposition
3. Ion irradiation-induced phase transformation of pyrochlore and zirconolite
4. Nanoscale Manipulation of Pyrochlore: New Nanocomposite Ionic Conductors
5. Heavy-ion irradiation effects in Gd2(Ti2−xZrx)O7 pyrochlores
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1. Irradiation stability and damage mechanism of Ln(1-x)SrxZrO(3.5–0.5x) (Ln La, Nd, Sm, Eu, Gd) ceramic waste form under Kr irradiation;Journal of the European Ceramic Society;2024-04
2. Study of the Influence of Doping Efficiency of CeO2 Ceramics with a Stabilizing Additive Y2O3 on Changes in the Strength and Thermophysical Parameters of Ceramics under High-Temperature Irradiation with Heavy Ions;Crystals;2024-03-29
3. Study on structural properties of swift heavy ion induced damage in Al2O3;Radiation Physics and Chemistry;2023-11
4. Transmission Electron Microscopy and Molecular Dynamic Study of Ion Tracks in Nanocrystalline Y2Ti2O7: Particle Size Effect on Track Formation Threshold;Crystals;2023-10-25
5. Response of nonstoichiometric pyrochlore composition Nd1.8Zr2.2O7.1 to electronic excitations;Journal of the American Ceramic Society;2023-09-18
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