Compact localized states in open scattering media

POSTER

Abstract

In this work, we study the compact localized scattering resonances of periodic and aperiodic chains of dipolar nanoparticles by combining the powerful Equitable Partition Theorem (EPT) of graph theory with the spectral dyadic Green’s matrix formalism for the engineering of embedded quasi-modes in non-Hermitian open scattering systems in three spatial dimensions. We provide analytical and numerical design of the spectral properties of compact localized states in electromagnetically coupled chains and establish a connection with the distinctive behavior of Bound States in the Continuum. Our results extend the concept of compact localization to the scattering resonances of complex open systems with aperiodic order beyond tight-binding models, and are relevant for the efficient design of novel photonic and metamaterials architectures with enhanced light-matter interactions

Presenters

  • Fabrizio Sgrignuoli

    Boston University

Authors

  • Fabrizio Sgrignuoli

    Boston University

  • Malte Röntgen

    Zentrum für optische Quantentechnologien, Universität Hamburg

  • Christian Morfonios

    Zentrum für optische Quantentechnologien, Universität Hamburg

  • Peter Schmelcher

    Zentrum für optische Quantentechnologien, Universität Hamburg

  • Luca Dal Negro

    Boston University