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Investigating the optical properties of a novel 3D self- assembled metamaterial made of carbon intercalated with bimetal nanoparticles

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Authors

  • Muhammad Abdullah Butt
  • Martin Neugebauer
  • Antonino Calà Lesina
  • Lora Ramunno

External Research Organisations

  • Max Planck Institute for the Science of Light
  • Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU Erlangen-Nürnberg)
  • University of Ottawa
  • Max Planck–University of Ottawa Centre for Extreme and Quantum Photonics
  • Fondazione Bruno Kessler
  • Saint Petersburg State University
  • Delft University of Technology
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Details

Original languageEnglish
Title of host publicationNovel Optical Materials and Applications, NOMA 2018
PublisherOSA - The Optical Society
ISBN (electronic)9781557528209
ISBN (print)9781943580439
Publication statusPublished - 2018
Externally publishedYes
EventNovel Optical Materials and Applications, NOMA 2018 - Zurich, Switzerland
Duration: 2 Jul 20185 Jul 2018

Publication series

NameOptics InfoBase Conference Papers
VolumePart F107-NOMA 2018
ISSN (electronic)2162-2701

Abstract

We investigate the optical properties of a self-assembled three-dimensional metamaterial consisting of novel carbon allotrope intercalated with gold-silver alloy nanoparticles. For our experimental study we use a microscopic Mu¨ller matrix measurement technique. The metamaterial exhibits strong linear birefringence in the visible spectral range as a direct consequence of the crystal structure of the carbon matrix, holding an immense potential for future applications.

ASJC Scopus subject areas

Cite this

Investigating the optical properties of a novel 3D self- assembled metamaterial made of carbon intercalated with bimetal nanoparticles. / Butt, Muhammad Abdullah; Neugebauer, Martin; Lesina, Antonino Calà et al.
Novel Optical Materials and Applications, NOMA 2018. OSA - The Optical Society, 2018. (Optics InfoBase Conference Papers; Vol. Part F107-NOMA 2018).

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Butt, MA, Neugebauer, M, Lesina, AC, Ramunno, L, Berini, P, Vaccari, A, Bauer, T, Manshina, AA, Banzer, P & Leuchs, G 2018, Investigating the optical properties of a novel 3D self- assembled metamaterial made of carbon intercalated with bimetal nanoparticles. in Novel Optical Materials and Applications, NOMA 2018. Optics InfoBase Conference Papers, vol. Part F107-NOMA 2018, OSA - The Optical Society, Novel Optical Materials and Applications, NOMA 2018, Zurich, Switzerland, 2 Jul 2018. https://doi.org/10.1364/noma.2018.notu4j.5
Butt, M. A., Neugebauer, M., Lesina, A. C., Ramunno, L., Berini, P., Vaccari, A., Bauer, T., Manshina, A. A., Banzer, P., & Leuchs, G. (2018). Investigating the optical properties of a novel 3D self- assembled metamaterial made of carbon intercalated with bimetal nanoparticles. In Novel Optical Materials and Applications, NOMA 2018 (Optics InfoBase Conference Papers; Vol. Part F107-NOMA 2018). OSA - The Optical Society. https://doi.org/10.1364/noma.2018.notu4j.5
Butt MA, Neugebauer M, Lesina AC, Ramunno L, Berini P, Vaccari A et al. Investigating the optical properties of a novel 3D self- assembled metamaterial made of carbon intercalated with bimetal nanoparticles. In Novel Optical Materials and Applications, NOMA 2018. OSA - The Optical Society. 2018. (Optics InfoBase Conference Papers). doi: 10.1364/noma.2018.notu4j.5
Butt, Muhammad Abdullah ; Neugebauer, Martin ; Lesina, Antonino Calà et al. / Investigating the optical properties of a novel 3D self- assembled metamaterial made of carbon intercalated with bimetal nanoparticles. Novel Optical Materials and Applications, NOMA 2018. OSA - The Optical Society, 2018. (Optics InfoBase Conference Papers).
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abstract = "We investigate the optical properties of a self-assembled three-dimensional metamaterial consisting of novel carbon allotrope intercalated with gold-silver alloy nanoparticles. For our experimental study we use a microscopic Mu¨ller matrix measurement technique. The metamaterial exhibits strong linear birefringence in the visible spectral range as a direct consequence of the crystal structure of the carbon matrix, holding an immense potential for future applications.",
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AU - Berini, Pierre

AU - Vaccari, Alessandro

AU - Bauer, Thomas

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