Fundamental lower size limit in wavelength selecting structures
Abstract
The fundamental lower size limit in wavelength selecting structures is explored with the aid of the Heisenberg uncertainty principle. The analysis shows that for a given wavelength selectivity resonating structures with optical feedback have the smallest dimensions. Experimental results obtained with integrated optics microring resonators (Q ~ 3.4 x 10^4) confirm the analysis. In addition, a discussion is given on the validity of the uncertainty principle in terms of hidden variables or restricted knowledge on the system in question.
Keywords
Cite
@article{arxiv.1707.05180,
title = {Fundamental lower size limit in wavelength selecting structures},
author = {A. Driessen and H. J. W. M. Hoekstra and D. J. W. Klunder and F. S. Tan},
journal= {arXiv preprint arXiv:1707.05180},
year = {2017}
}
Comments
This is the first of a collection of four studies dealing with the weird properties of a photon, compiled in 2017 by Alfred Driessen. The original version of 2003 has not yet been published and the current version is essentially unchanged