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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Materials Map under construction

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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1.080 Topics available

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693.932 PEOPLE
693.932 People People

693.932 People

Show results for 693.932 people that are selected by your search filters.

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PeopleLocationsStatistics
Naji, M.
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Jain, S.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (6/6 displayed)

  • 2024Safety considerations for hydrometallurgical metal recovery from lithium‐ion batteriescitations
  • 2023Deep Learning-Based Automated Segmentation of Fiber Breaks in Advanced Compositescitations
  • 2014Thermally-stimulated emission analysis of bismuth-doped silica fibers4citations
  • 2014X-ray tomography for structural analysis of microstructured and multimaterial optical fibers and preforms32citations
  • 2014X-ray tomography for structural analysis of microstructured and multimaterial optical fibers and preforms32citations
  • 2014Multi-element fiber for next generation optical communicationcitations

Places of action

Chart of shared publication
Hoseyni, S. M.
1 / 1 shared
Cordiner, J.
1 / 1 shared
Kopp, R.
1 / 13 shared
M., Spearing S.
1 / 1 shared
Adjodah, D.
1 / 1 shared
L., Wardle B.
1 / 4 shared
Rosini, S.
1 / 2 shared
Saifaee, S.
1 / 1 shared
Vuong, D.
1 / 1 shared
Mcgllick, M.
1 / 1 shared
X., Li C.
1 / 1 shared
Joseph, J.
1 / 4 shared
Sinclair, I.
1 / 47 shared
Furtado, C.
1 / 14 shared
Duchez, J. B.
1 / 1 shared
Mady, F.
1 / 2 shared
Benabdesselam, M.
1 / 2 shared
Sahu, Jayanta Kumar
2 / 64 shared
Dussardier, B.
1 / 5 shared
Núñez-Velázquez, Martin Miguel Angel
1 / 17 shared
Mebrouk, Y.
1 / 1 shared
Bradley, T.
1 / 3 shared
Wheeler, N. V.
1 / 1 shared
Petrovich, M.
1 / 2 shared
Numkam Fokoua, E.
1 / 2 shared
Sandoghchi, S. R.
1 / 2 shared
Lian, Z.
2 / 2 shared
Gray, D. R.
2 / 2 shared
Abokhamis Mousavi, S. M.
1 / 1 shared
Boardman, R. P.
1 / 1 shared
Wooler, J. P.
2 / 2 shared
Baddela, N.
2 / 2 shared
Richardson, D. J.
1 / 9 shared
Hayes, J.
2 / 3 shared
Jasion, G.
1 / 1 shared
Chen, Y.
1 / 71 shared
Poletti, F.
1 / 5 shared
Chen, Yong
1 / 8 shared
Jasion, Gregory T.
1 / 8 shared
Sandoghchi, Seyed Reza
1 / 6 shared
Petrovich, Marco N.
1 / 6 shared
Mousavi, Seyed Mohammad Abokhamis
1 / 2 shared
Numkam Fokoua, Eric Rodrigue
1 / 6 shared
Richardson, David J.
1 / 35 shared
Bradley, Tom
1 / 4 shared
Poletti, Francesco
1 / 34 shared
Boardman, Richard P.
1 / 12 shared
Wheeler, Natalie V.
1 / 9 shared
Thipparapu, Naresh Kumar
1 / 5 shared
Barua, P.
1 / 8 shared
Chart of publication period
2024
2023
2014

Co-Authors (by relevance)

  • Hoseyni, S. M.
  • Cordiner, J.
  • Kopp, R.
  • M., Spearing S.
  • Adjodah, D.
  • L., Wardle B.
  • Rosini, S.
  • Saifaee, S.
  • Vuong, D.
  • Mcgllick, M.
  • X., Li C.
  • Joseph, J.
  • Sinclair, I.
  • Furtado, C.
  • Duchez, J. B.
  • Mady, F.
  • Benabdesselam, M.
  • Sahu, Jayanta Kumar
  • Dussardier, B.
  • Núñez-Velázquez, Martin Miguel Angel
  • Mebrouk, Y.
  • Bradley, T.
  • Wheeler, N. V.
  • Petrovich, M.
  • Numkam Fokoua, E.
  • Sandoghchi, S. R.
  • Lian, Z.
  • Gray, D. R.
  • Abokhamis Mousavi, S. M.
  • Boardman, R. P.
  • Wooler, J. P.
  • Baddela, N.
  • Richardson, D. J.
  • Hayes, J.
  • Jasion, G.
  • Chen, Y.
  • Poletti, F.
  • Chen, Yong
  • Jasion, Gregory T.
  • Sandoghchi, Seyed Reza
  • Petrovich, Marco N.
  • Mousavi, Seyed Mohammad Abokhamis
  • Numkam Fokoua, Eric Rodrigue
  • Richardson, David J.
  • Bradley, Tom
  • Poletti, Francesco
  • Boardman, Richard P.
  • Wheeler, Natalie V.
  • Thipparapu, Naresh Kumar
  • Barua, P.
OrganizationsLocationPeople

article

X-ray tomography for structural analysis of microstructured and multimaterial optical fibers and preforms

  • Chen, Yong
  • Jasion, Gregory T.
  • Sandoghchi, Seyed Reza
  • Petrovich, Marco N.
  • Mousavi, Seyed Mohammad Abokhamis
  • Numkam Fokoua, Eric Rodrigue
  • Lian, Z.
  • Richardson, David J.
  • Bradley, Tom
  • Gray, D. R.
  • Poletti, Francesco
  • Boardman, Richard P.
  • Wooler, J. P.
  • Baddela, N.
  • Wheeler, Natalie V.
  • Hayes, J.
  • Jain, S.
Abstract

Specialty optical fibers, in particular microstructured and multi-material optical fibers, have complex geometry in terms of structure and/or material composition. Their fabrication, although rapidly developing, is still at a very early stage of development compared with conventional optical fibers. Structural characterization of these fibers during every step of their multi-stage fabrication process is paramount to optimize the fiber-drawing process. The complexity of these fibers restricts the use of conventional refractometry and microscopy techniques to determine their structural and material composition. Here we present, to the best of our knowledge, the first nondestructive structural and material investigation of specialty optical fibers using X-ray computed tomography (CT) methods, not achievable using other techniques. Recent advances in X-ray CT techniques allow the examination of optical fibers and their preforms with sub-micron resolution while preserving the specimen for onward processing and use. In this work, we study some of the most challenging specialty optical fibers and their preforms. We analyze a hollow core photonic band gap fiber and its preforms, and bond quality at the joint between two fusion-spliced hollow core fibers. Additionally, we studied a multi-element optical fiber and a metal incorporated dual suspended-core optical fiber. The application of X-ray CT can be extended to almost all optical fiber types, preforms and devices.

Topics
  • impedance spectroscopy
  • tomography
  • drawing
  • microscopy