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Optical Contactless Measurement of Electric Field-Induced Tensile Stress in Diamond Nanoscale Needles.
Rigutti, L; Venturi, L; Houard, J; Normand, A; Silaeva, E P; Borz, M; Malykhin, S A; Obraztsov, A N; Vella, A.
Afiliação
  • Rigutti L; Groupe de Physique des Matériaux, Normandie Univ, UNIROUEN, INSA Rouen, CNRS , 76000 Rouen, France.
  • Venturi L; Groupe de Physique des Matériaux, Normandie Univ, UNIROUEN, INSA Rouen, CNRS , 76000 Rouen, France.
  • Houard J; Groupe de Physique des Matériaux, Normandie Univ, UNIROUEN, INSA Rouen, CNRS , 76000 Rouen, France.
  • Normand A; Groupe de Physique des Matériaux, Normandie Univ, UNIROUEN, INSA Rouen, CNRS , 76000 Rouen, France.
  • Silaeva EP; Groupe de Physique des Matériaux, Normandie Univ, UNIROUEN, INSA Rouen, CNRS , 76000 Rouen, France.
  • Borz M; Groupe de Physique des Matériaux, Normandie Univ, UNIROUEN, INSA Rouen, CNRS , 76000 Rouen, France.
  • Malykhin SA; Department of Physics and Mathematics, University of Eastern Finland , Joensuu 80101, Finland.
  • Obraztsov AN; Department of Physics, M V Lomonosov Moscow State University , Moscow 119991, Russia.
  • Vella A; Department of Physics and Mathematics, University of Eastern Finland , Joensuu 80101, Finland.
Nano Lett ; 17(12): 7401-7409, 2017 12 13.
Article em En | MEDLINE | ID: mdl-29095635
ABSTRACT
The application of a high electrostatic field at the apex of monocrystalline diamond nanoscale needles induces an energy splitting of the photoluminescence lines of color centers. In particular, the splitting of the zero-phonon line of the neutral nitrogen-vacancy complex (NV0) has been studied within a laser-assisted tomographic atom probe equipped with an in situ microphotoluminescence bench. The measured quadratic dependence of the energy splitting on the applied voltage corresponds to the stress generated on the metal-like apex surface by the electrostatic field. Tensile stress up to 7 GPa has thus been measured in the proximity of the needle apex. Furthermore, the stress scales along the needle shank inversely proportionally to its axial cross section. We demonstrate thus a method for contactless piezo-spectroscopy of nanoscale systems by electrostatic field regulation for the study of their mechanical properties. These results also provide an experimental confirmation to the models of dielectrics surface metallization under high electrostatic field.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article