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Smart Radio Environments Empowered by Reconfigurable Intelligent Surfaces: How it Works, State of Research, and Road Ahead

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arxiv 2004.09352 v1 pith:A5UEP5IL submitted 2020-04-20 cs.IT eess.SPmath.IT

classification cs.ITeess.SPmath.IT
keywords whatintelligentradioreconfigurableresearchsmartenvironmentsmathematical
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What is a reconfigurable intelligent surface? What is a smart radio environment? What is a metasurface? How do metasurfaces work and how to model them? How to reconcile the mathematical theories of communication and electromagnetism? What are the most suitable uses and applications of reconfigurable intelligent surfaces in wireless networks? What are the most promising smart radio environments for wireless applications? What is the current state of research? What are the most important and challenging research issues to tackle? These are a few of the many questions that we investigate in this short opus, which has the threefold objective of introducing the emerging research field of smart radio environments empowered by reconfigurable intelligent surfaces, putting forth the need of reconciling and reuniting C. E. Shannon's mathematical theory of communication with G. Green's and J. C. Maxwell's mathematical theories of electromagnetism, and reporting pragmatic guidelines and recipes for employing appropriate physics-based models of metasurfaces in wireless communications.

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  1. Transmission eigenvalue distribution in disordered media from radiant field theory

    math-ph 2024-11 conditional novelty 8.0 of 10

    A matrix transport equation derived from replicated field theory yields the full transmission eigenvalue distribution in disordered media, from quasiballistic to diffusive regimes, for waveguides and infinite slabs.

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