@article{01ecaf14b9194e7daa0f3d19fb739317,
title = "Unsupervised machine learning to classify the confinement of waves in periodic superstructures",
abstract = "We propose a rigorous method to classify the dimensionality of wave confinement by utilizing unsupervised machine learning to enhance the accuracy of our recently presented scaling method [Phys. Rev. Lett.129, 176401 (2022)10.1103/PhysRevLett.129.176401]. We apply the standard k-means++ algorithm as well as our own model-based algorithm to 3D superlattices of resonant cavities embedded in a 3D inverse woodpile photonic band gap crystal with a range of design parameters. We compare their results against each other and against the direct usage of the scaling method without clustering. Since the clustering algorithms require the set of confinement dimensionalities present in the system as an input, we investigate cluster validity indices (CVIs) as a means to find these values. We conclude that the most accurate outcome is obtained by first applying direct scaling to find the correct set of confinement dimensionalities, and subsequently utilizing our model-based clustering algorithm to refine the results.",
author = "Marek Kozon and Ad Lagendijk and Matthias Schlottbom and \{van der Vegt\}, \{Jaap J.W.\} and Vos, \{Willem L.\}",
note = "Funding Information: Funding. Nederlandse Organisatie voor Wetenschappelijk Onderzoek (680.93.14CSER035, 680-91-084, OCENW.GROOT.2019.071, P15-36): NWO-CSER program, project “Understanding the absorption of interfering light for improved solar cell efficiency” under Project No. 680.93.14CSER035; NWO-JCER program, project “Accurate and Efficient Computation of the Optical Properties of Nanostructures for Improved Photovoltaics” under the Project No. 680-91-084; the NWO GROOT program, project “Self-Assembled Icosahedral Photonic Quasicrystals with a Band Gap for Visible Light” under the Project No. OCENW.GROOT.2019.071; the NWO-TTW Perspectief program P15-36 “Free-Form Scattering Optics” (FFSO) collaboration between UT, TUD, TUE with ASML, Demcon, Lumileds, Schott, Signify, and TNO; and the MESA+ Institute for Nanotechnology, MESA+ section Applied Nanophotonics (ANP). Publisher Copyright: {\textcopyright} 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement. Financial transaction number: 2500086806",
year = "2023",
month = sep,
day = "6",
doi = "10.1364/OE.492014",
language = "English",
volume = "31",
pages = "31177--31199",
journal = "Optics express",
issn = "1094-4087",
publisher = "Optica Publishing Group (formerly OSA)",
number = "19",
}