Publicaciones en las que colabora con JUAN MANUEL ROJO ALAMINOS (37)

2022

  1. Interaction of chiral l-dialanine with Cu(100)

    Physical Chemistry Chemical Physics, Vol. 24, Núm. 13, pp. 8022-8031

2010

  1. Hole and electron attractor model: An explanation of clustered states in manganites

    Progress in Solid State Chemistry, Vol. 38, Núm. 1-4, pp. 38-45

2009

  1. La Física de la Materia Condensada en España

    Revista española de física, Vol. 23, Núm. 4, pp. 10-16

  2. Plastic properties of gold surfaces nanopatterned by ion beam sputtering

    Journal of Physics Condensed Matter, Vol. 21, Núm. 22

2008

  1. Dislocation emission at the onset of plasticity during nanoindentation in gold

    Philosophical Magazine, Vol. 88, Núm. 3, pp. 281-296

  2. Reduced hardness at the onset of plasticity in nanoindented titanium dioxide

    Physical Review B - Condensed Matter and Materials Physics, Vol. 78, Núm. 22

  3. Uncommon dislocation processes at the incipient plasticity of stepped gold surfaces

    Physical Review Letters, Vol. 100, Núm. 10

2007

  1. Defects study in gold surfaces produced by ion bombardment

    Materials Research Society Symposium Proceedings

2006

  1. Atomic events at the onset of plasticity in the Au(001) surface

    Materials Research Society Symposium Proceedings

2005

  1. Thermally activated demagnetization in (La0.97 Ca 0.03)0.96Mn0.96 O3-δ

    Journal of Magnetism and Magnetic Materials

2004

  1. Room-temperature CMR in manganites with 50% Mn 4+ by generation of cationic vacancies

    Journal of Magnetism and Magnetic Materials

  2. Analysis at atomic level of dislocation emission and motion around nanoindentations in gold

    Surface Science, Vol. 572, Núm. 2-3, pp. 467-475

  3. Characterising and controlling surface defects

    European Physical Journal B, Vol. 40, Núm. 4, pp. 421-426

2003

  1. A hole-attractor model: Tailoring manganese-related perovskites

    Chemistry of Materials, Vol. 15, Núm. 15, pp. 2864-2866

  2. Dislocation configurations around a nanoindentation in the surface of a fcc metal

    Philosophical Magazine, Vol. 83, Núm. 4, pp. 485-502

  3. Dislocation-mediated mechanisms of mass transport around nanoindentations in Fcc metals

    Materials Research Society Symposium - Proceedings