MARIA JOSE
CATURLA TEROL
CATEDRATICO/A DE UNIVERSIDAD
Belgian Nuclear Research Centre
Mol, BélgicaPublications in collaboration with researchers from Belgian Nuclear Research Centre (12)
2021
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An object kinetic Monte Carlo method to model precipitation and segregation in alloys under irradiation
Journal of Nuclear Materials, Vol. 557
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Multiscale modelling for fusion and fission materials: The M4F project
Nuclear Materials and Energy, Vol. 29
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Physical mechanisms and parameters for models of microstructure evolution under irradiation in Fe alloys – Part I: Pure Fe
Nuclear Materials and Energy, Vol. 29
2019
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Insights from atomistic models on loop nucleation and growth in α-Fe thin films under Fe+ 100 keV irradiation
Journal of Nuclear Materials, Vol. 521, pp. 71-80
2016
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Microstructure Evolution in Fe and Fe-Cr Alloys with OKMC Methods
EPJ Web of Conferences
2011
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Object Kinetic Monte Carlo calculations of irradiated Fe-Cr dilute alloys: The effect of the interaction radius between substitutional Cr and self-interstitial Fe
Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms
2010
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Modeling the long-term evolution of the primary damage in ferritic alloys using coarse-grained methods
Journal of Nuclear Materials, Vol. 406, Núm. 1, pp. 39-54
2009
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The EU programme for modelling radiation effects in fusion reactor materials: An overview of recent advances and future goals
Journal of Nuclear Materials, Vol. 386-388, Núm. C, pp. 1-7
2004
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Assessment of structural and silica materials under irradiation in inertial fusion reactors: Comparison of multiscale modeling and microscopy
Inertial Fusion Sciences and Applications 2003
2003
2002
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Insight into the materials choice for inertial fusion energy reactors considering radiation damage: Neutron irradiation intensities and basic knowledge from multiscale modeling
Laser and Particle Beams, Vol. 20, Núm. 4, pp. 627-631
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Multiscale modeling study of pulsed damage accumulation in α-Fe under inertial fusion conditions
Journal of Nuclear Materials, Vol. 307-311, Núm. 2 SUPPL., pp. 907-911