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About the Heisenberg's uncertainty principle and the determination of effective optical indices in integrated photonics at high sub-wavelength regime

Abstract : Within the Heisenberg’s uncertainty principle it is explicitly discussed the impact of these inequalities on the theory of integrated photonics at sub-wavelength regime. More especially, the uncertainty of the effective index values in nanophotonics at sub-wavelength regime, which is defined as the eigenvalue of the overall opto-geometric problems in integrated photonics, appears directly stemming from Heisenberg’s uncertainty. An apt formula is obtained allowing us to assume that the incertitude and the notion of eigenvalue called effective optical index or propagation constant is inversely proportional to the spatial dimensions of a given nanostructure yielding a transfer of the fuzziness on relevant senses of eigenvalues below a specific limit’s volume.
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https://hal.archives-ouvertes.fr/hal-01226484
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Soumis le : jeudi 31 mars 2016 - 16:28:59
Dernière modification le : mardi 12 janvier 2021 - 16:40:42
Archivage à long terme le : : vendredi 1 juillet 2016 - 11:01:50

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Bruno Bêche, E Gaviot. About the Heisenberg's uncertainty principle and the determination of effective optical indices in integrated photonics at high sub-wavelength regime. Optik, Elsevier, 2016, 127 (7), pp.3643-3645. ⟨10.1016/j.ijleo.2015.12.168⟩. ⟨hal-01226484v4⟩

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