Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (2/2 displayed)

  • 2024The polarisation properties of the HD 181327 debris ring. Evidence for sub-micron particles from scattered light observations3citations
  • 2017Electrochemical characterization of the oxide film formed at room temperature on the 690 TT alloycitations

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Tran, Mai T. T.
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Vivier, Vincent
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Euch, Salma El
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Sutter, Eliane M. M.
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Marion, A.
1 / 1 shared
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2024
2017

Co-Authors (by relevance)

  • Tran, Mai T. T.
  • Vivier, Vincent
  • Euch, Salma El
  • Sutter, Eliane M. M.
  • Marion, A.
OrganizationsLocationPeople

article

The polarisation properties of the HD 181327 debris ring. Evidence for sub-micron particles from scattered light observations

  • Augereau, J. -C.
  • Levasseur-Regourd, A. -C.
  • Sauvage, J. F.
  • Thébault, P.
  • Marino, S.
  • Milli, J.
  • Tazaki, R.
  • Dominik, Carsten
  • Van Holstein, R. G.
  • Costille, A.
  • Schmid, H. M.
  • Gluck, L.
  • Hadamcik, E.
  • Zurlo, A.
  • Boccaletti, A.
  • Olofsson, J.
  • Pinte, C.
  • Lagrange, A. M.
  • Poch, O.
  • Choquet, E.
  • Ménard, F.
  • Lasue, J.
  • Mouillet, D.
  • Zubko, E.
  • Desgrange, C.
  • Engler, N.
  • Langlois, M.
  • Baruteau, C.
  • Renard, J. B.
Abstract

Context. Polarisation is a powerful remote-sensing tool to study the nature of particles scattering the starlight. It is widely used to characterise interplanetary dust particles in the Solar System and increasingly employed to investigate extrasolar dust in debris discs' systems. <BR /> Aims: We aim to measure the scattering properties of the dust from the debris ring around HD 181327 at near-infrared wavelengths. <BR /> Methods: We obtained high-contrast polarimetric images of HD 181327 in the H band with the SPHERE/IRDIS instrument on the Very Large Telescope (ESO). We complemented them with archival data from HST/NICMOS in the F 110W filter reprocessed in the context of the Archival Legacy Investigations of Circumstellar Environments (ALICE) project. We developed a combined forward-modelling framework to simultaneously retrieve the scattering phase function in polarisation and intensity. <BR /> Results: We detected the debris disc around HD 181327 in polarised light and total intensity. We measured the scattering phase function and the degree of linear polarisation of the dust at 1.6 µm in the birth ring. The maximum polarisation is 23.6% ± 2.6% and occurs between a scattering angle of 70° and 82°. <BR /> Conclusions: We show that compact spherical particles made of a highly refractive and relatively absorbing material in a differential power-law size distribution of exponent −3.5 can simultaneously reproduce the polarimetric and total intensity scattering properties of the dust. This type of material cannot be obtained with a mixture of silicates, amorphous carbon, water ice, and porosity, and requires a more refracting component such as iron-bearing minerals. We reveal a striking analogy between the near-infrared polarisation of comets and that of HD 181327. The methodology developed here combining VLT/SPHERE and HST/NICMOS may be applicable in the future to combine the polarimetric capabilities of SPHERE with the sensitivity of JWST. <P />The reduced images (FITS files) presented in Fig. 2 are available at the CDS via anonymous ftp to <A href="https://cdsarc.cds.unistra.fr">cdsarc.cds.unistra.fr</A> (ftp://130.79.128.5) or via <A href="https://cdsarc.cds.unistra.fr/viz-bin/cat/J/A+A/683/A22">https://cdsarc.cds.unistra.fr/viz-bin/cat/J/A+A/683/A22</A>...

Topics
  • impedance spectroscopy
  • mineral
  • amorphous
  • Carbon
  • phase
  • iron
  • porosity