arXiv · 2603.14166
Minkowski-Space Modeling of Hyperbolic Lenses
Abstract
The extreme anisotropy of hyperbolic materials enables extreme wave confinement, but it is also associated with an inherent misalignment between phase and energy flow, which complicates device modeling and design. Here we introduce a Minkowski-space approach to describe hyperbolic wave propagation, showing that this complexity is geometric rather than physical. By embedding anisotropy into an effective Lorentzian metric, we establish a rational design framework for hyperbolic interfaces and lenses, and analytically derive their transfer function and resolution limits, enabling ultra-large numerical apertures and deep sub-diffraction focusing. We validate our theory with the design and full-wave modeling of a planar van der Waals polaritonic lens operating in the mid-infrared frequency range.
Explore related subjects
Keep this discovery
Enrico Maria Renzi, Simon Yves, Sveinung Erland, Diana Strickland, Eitan Bachmat, Andrea Alù. 2026-03-15. Minkowski-Space Modeling of Hyperbolic Lenses. https://doi.org/10.1103/3s9t-xmtx
Cite the original work for its findings. Save a collection to share your selection of sources.