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Updated: Mar 29, 2026

Using Microwave and Macroscopic Samples of Dielectric Solids to Study the Photonic Properties of Disordered Photonic Bandgap Materials
Published on: September 26, 2014
Broadband Dipole Absorption in Dispersive Photonic Time Crystals
Thomas F Allard1, Jaime E Sustaeta-Osuna1, Francisco J García-Vidal1
1Universidad Autónoma de Madrid, Universidad Autónoma de Madrid, Departamento de Física Teórica de la Materia Condensada, E-28049 Madrid, Spain and Condensed Matter Physics Center (IFIMAC), E-28049 Madrid, Spain.
Abstract:
Photonic media modulated periodically in time, termed photonic time crystals (PTCs), have attracted considerable attention for their ability to open momentum bandgaps hosting amplifying modes. These momentum gaps, however, generally appear only at the system's parametric resonance condition which constrain many features derived from amplification to a narrow frequency band. Moreover, they are accompanied by exceptional points (EPs) and may drive the system into an instability, which renders their analysis more intricate. Here, we show that a careful consideration of dispersion and absorption can overcome these issues. By investigating the dissipated power of a point-dipole embedded in a dispersive and absorptive PTC, we unveil that temporal modulation enables the conversion of dipole emission into dipole absorption within a broadband frequency window free of EPs. We demonstrate that this effect is general, emerging in both the stable and unstable regimes, and occurs from weak modulation strength to low modulations frequencies that could be achieved for various material platforms.

