Advanced Photonics Nexus, Volume. 3, Issue 5, 056007(2024)

Solving partial differential equations with waveguide-based metatronic networks Editors' Pick

Ross Glyn MacDonald1,2, Alex Yakovlev2, and Victor Pacheco-Peña1、*
Author Affiliations
  • 1Newcastle University, School of Mathematics Statistics and Physics, United Kingdom
  • 2Newcastle University, School of Engineering, United Kingdom
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    References(77)

    [3] D. M. Pozar. Microwave Engineering, 756(2011).

    [6] Z. Bofang. The Finite Element Method(2018).

    [38] V. Pacheco-Peña et al. Holding and amplifying electromagnetic waves with temporal non-Foster metastructures(2023).

    [63] A. Chakrabarti, A. K. Nandakumaran, P. S. Datti et al. Heat equation. Partial Differential Equations, 216-251(2020).

    [69] S. Das. Microwave Engineering(2014).

    [72] L. Burstein. PDE Toolbox Primer for Engineering Applications with MATLAB® Basics, 383(2022).

    [73] Y. W. Kwon, H. Bang(2018).

    [76] F. R. Quintela et al. A general approach to Kirchhoff’s laws. IEEE Trans. Educ., 52, 273-278(2009).

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    Ross Glyn MacDonald, Alex Yakovlev, Victor Pacheco-Peña, "Solving partial differential equations with waveguide-based metatronic networks," Adv. Photon. Nexus 3, 056007 (2024)

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    Paper Information

    Category: Research Articles

    Received: Apr. 29, 2024

    Accepted: Sep. 3, 2024

    Published Online: Oct. 21, 2024

    The Author Email: Pacheco-Peña Victor (victor.pacheco-pena@newcastle.ac.uk)

    DOI:10.1117/1.APN.3.5.056007

    CSTR:32397.14.1.APN.3.5.056007

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