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Título del libro:
Título del capítulo: Classical analogues of Gilmore-Perelomov coherent states

Autores UNAM:
BLAS MANUEL RODRIGUEZ LARA;
Autores externos:

Idioma:

Año de publicación:
2016
Palabras clave:

Carbon; Carbon nanotubes; Dispersions; Electromagnetic fields; Graphene; Graphene devices; Nanotubes; Optical lattices; Photonics; Quantum theory; Waveguide couplers; Waveguides; Yarn; Dispersion relations; Heisenberg-Weyl group; Impulse function; Invariant properties; Optical simulation; Photonic integrated circuits; Photonic waveguides; Propagation distances; Photonic devices


Resumen:

We analyze the propagation of electromagnetic fields through tight-binding arrays of coupled photonic waveguides as a symmetry problem in the case of invariant properties of the propagation distance. We consider the Heisenberg-Weyl group and the photonic lattices with that underlying symmetry. Based on this, dispersion relations, impulse functions and normal states can be constructed from the point of view of Gilmore-Perelomov coherent state approach and different classes of propagation invariant input can be constructed. © 2016 SPIE.


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