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Journal ArticleDOI

Localization of optics: Quasiperiodic media.

Mahito Kohmoto, +2 more
- 08 Jun 1987 - 
- Vol. 58, Iss: 23, pp 2436-2438
TLDR
An experiment to probe the (quasi)localization of the photon is proposed, in which optical layers are constructed following the Fibonacci sequence, which has scaling with respect to the number of layers, as well as an interesting fluctuation.
Abstract
An experiment to probe the (quasi)localization of the photon is proposed, in which optical layers are constructed following the Fibonacci sequence. The transmission coefficient has a rich structure as a function of the wavelength of light and, in fact, is multifractal. For particular wavelengths for which the resonance condition is satisfied, the light propagation has scaling with respect to the number of layers, as well as an interesting fluctuation.

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Citations
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Room-temperature polariton repulsion and ultra-strong coupling for a non-trivial topological one-dimensional tunable Fibonacci-conjugated porous-Silicon photonic quasi-crystal showing quasi bound-states-in-the-continuum

TL;DR: In this article, the exciton's energy was tuned either to the photonic-edge or the defect in the middle of the pseudo-bandgap region of the 1D cavity.
Proceedings ArticleDOI

Quantum walks in two-dimension arrays of waveguides

TL;DR: In this article , the authors present results of their numerical investigation of quantum walks (QWs) in different types of 2D arrays of waveguides, and they show that localized QWs in quasiperiodic arrays based on Fibonacci sequences are highly controllable due to the deterministically disordered nature of qua-iodic photonic lattices.
Journal ArticleDOI

Localization and Scaling Behavior of Polariton-Gap in Fibonacci and Symmetric Fibonacci-Class Piezomagnetic Superlattices

TL;DR: In this paper, a comparative study on the localization and scaling behavior in piezomagnetic Fibonacci and symmetric symmetric FIFO(n) superlattices is presented.
Proceedings ArticleDOI

Electromagnetic waves in fractal nanostructures

TL;DR: In this article, the properties of electromagnetic wave propagation in fractal nanostructures have been reviewed and summarized, and a simple model that would allow to isolate effects pertaining to the geometrical organization of the structure was proposed.
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