arXiv · 2602.23347
Temporal metamaterials with passive switching as impedance-matched absorbers
Abstract
Recent experiments on temporal reflection in transmission line metamaterials and theoretical treatments of dispersive time-varying media have established the fundamental role of modulation mechanisms on the interface conditions, underpinning the introduction of passive photonic time crystals with stable momentum band gaps. Drawing from these concepts, it is shown that temporal metamaterials with simultaneous passive permittivity and permeability switching exhibit wideband absorption with impedance-matching, effectively behaving as one-dimensional perfectly matched layers. Under the effective medium theory, the loss mechanism is attributed to the emergent effective electric and magnetic conductivities, which are used to derive an approximate matching condition for asynchronous modulation and to engineer lossy material properties. The proposed approach and its performance beyond the Rozanov bound are verified with semi-analytical calculations as well as full-wave simulations, and the limits on realizing a two-dimensional temporal perfectly matched layer are theoretically evaluated.
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Suat Barış İplikçioğlu. 2026-02-26. Temporal metamaterials with passive switching as impedance-matched absorbers. https://arxiv.org/abs/2602.23347
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