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Robustness of large-area suspended graphene under interaction with intense laser

  • Y. Kuramitsu
  • , T. Minami
  • , T. Hihara
  • , K. Sakai
  • , T. Nishimoto
  • , S. Isayama
  • , Y. T. Liao
  • , K. T. Wu
  • , W. Y. Woon
  • , S. H. Chen
  • , Y. L. Liu
  • , S. M. He
  • , C. Y. Su
  • , M. Ota
  • , S. Egashira
  • , A. Morace
  • , Y. Sakawa
  • , Y. Abe
  • , H. Habara
  • , R. Kodama
  • L. N.K. Döhl, N. Woolsey, M. Koenig, H. S. Kumar, N. Ohnishi, M. Kanasaki, T. Asai, T. Yamauchi, K. Oda, Ko Kondo, H. Kiriyama, Y. Fukuda
  • Osaka University
  • National Central University
  • Interdisciplinary Graduate School of Engineering and Science
  • Kyushu University
  • Molecular Science and Technology
  • Academia Sinica Taiwan
  • Institute of Space and Plasma Sciences
  • National Cheng Kung University
  • Graduate Institute of Energy Engineering
  • York Plasma Institute
  • University of York
  • Glen Eastman Energy b.v.
  • Department of Aerospace Engineering
  • Tohoku University
  • Kobe University
  • Kansai Photon Science Institute

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

21 Citations (Scopus)

Résumé

Graphene is known as an atomically thin, transparent, highly electrically and thermally conductive, light-weight, and the strongest 2D material. We investigate disruptive application of graphene as a target of laser-driven ion acceleration. We develop large-area suspended graphene (LSG) and by transferring graphene layer by layer we control the thickness with precision down to a single atomic layer. Direct irradiations of the LSG targets generate MeV protons and carbons from sub-relativistic to relativistic laser intensities from low contrast to high contrast conditions without plasma mirror, evidently showing the durability of graphene.

langue originaleAnglais
Numéro d'article2346
journalScientific Reports
Volume12
Numéro de publication1
Les DOIs
étatPublié - 1 déc. 2022

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