Magnetically Reconfigurable Toroidal Metasurfaces

Article Properties
  • Language
    Italian
  • Publication Date
    2024/03/06
  • Indian UGC (journal)
  • Refrences
    62
  • Nityananda Acharyya Ecole Centrale School of Engineering Mahindra University Hyderabad 500043 India
  • Soumyajyoti Mallick Ecole Centrale School of Engineering Mahindra University Hyderabad 500043 India
  • Shreeya Rane Ecole Centrale School of Engineering Mahindra University Hyderabad 500043 India
  • Mousumi Upadhyay Kahaly Extreme Light Infrastructure Szeged 6728 Hungary
  • Dibakar Roy Chowdhury Ecole Centrale School of Engineering Mahindra University Hyderabad 500043 India ORCID (unauthenticated)
Abstract
Cite
Acharyya, Nityananda, et al. “Magnetically Reconfigurable Toroidal Metasurfaces”. Advanced Optical Materials, 2024, https://doi.org/10.1002/adom.202303045.
Acharyya, N., Mallick, S., Rane, S., Upadhyay Kahaly, M., & Roy Chowdhury, D. (2024). Magnetically Reconfigurable Toroidal Metasurfaces. Advanced Optical Materials. https://doi.org/10.1002/adom.202303045
Acharyya N, Mallick S, Rane S, Upadhyay Kahaly M, Roy Chowdhury D. Magnetically Reconfigurable Toroidal Metasurfaces. Advanced Optical Materials. 2024;.
Journal Categories
Science
Chemistry
Science
Physics
Optics
Light
Technology
Chemical technology
Technology
Electrical engineering
Electronics
Nuclear engineering
Materials of engineering and construction
Mechanics of materials
Refrences
Title Journal Journal Categories Citations Publication Date
10.2528/PIER23081008 2023
Atomic scale interfacial magnetism and origin of metal-insulator transition in (LaNiO$$_3$$)$$_n$$/(CaMnO$$_3$$)$$_m$$ superlattices: a first principles study

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3 2023
Dynamic terahertz wave propagation through Al/Ni based multilayer spin valve structures

Journal of Applied Physics
  • Science: Chemistry: Physical and theoretical chemistry
  • Science: Physics
  • Technology: Chemical technology
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials
  • Science: Physics
1 2023
Dynamic terahertz wave propagation through Al/Ni based multilayer spin valve structures

ACS Applied Optical Materials
  • Science: Chemistry
  • Science: Physics: Optics. Light
2003
Dynamic terahertz wave propagation through Al/Ni based multilayer spin valve structures

1957