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    Reference Work Entry In depth

    DFT-Parameterized Object Kinetic Monte Carlo Simulations of Radiation Damage

    Materials for nuclear applications are subjected to extremely stringent conditions. The incoming energetic particles create different types of defects in the material that modify the system microstructure. The...

    Enrique Martínez, María José Caturla, Jaime Marian in Handbook of Materials Modeling (2020)

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    Reference Work Entry In depth

    Kinetic Monte Carlo Algorithms for Nuclear Materials Applications

    Microstructure evolution of irradiated materials is a complex phenomenon that involves time and length scales that can expand several orders of magnitude. Defects produced in the irradiation can interact with ...

    J. P. Balbuena, María José Caturla, Enrique Martínez in Handbook of Materials Modeling (2020)

  3. Article

    Introduction

    Enrique Martinez, Danny Perez, Vikram Gavani, Steven Kenny in Journal of Materials Research (2018)

  4. No Access

    Living Reference Work Entry In depth

    DFT-Parameterized Object Kinetic Monte Carlo Simulations of Radiation Damage

    Materials for nuclear applications are subjected to extremely stringent conditions. The incoming energetic particles create different types of defects in the material that modify the system microstructure. The...

    Enrique Martínez, María José Caturla, Jaime Marian in Handbook of Materials Modeling

  5. No Access

    Article

    Micro/meso-scale computational study of dislocation-stacking-fault tetrahedron interactions in copper

    In a carbon-free economy, nuclear power will surely play a fundamental role as a clean and cost-competitive energy source. However, new-generation nuclear concepts involve temperature and irradiation condition...

    Jaime Marian, Enrique Martínez, Hyon-Jee Lee in Journal of Materials Research (2009)