Field theory description of the non-perturbative optical nonlinearity of epsilon-near-zero media
Tamashevich, Yaraslau; Shubitidze, Tornike; Dal Negro, Luca; Ornigotti, Marco (2024-01)
Tamashevich, Yaraslau
Shubitidze, Tornike
Dal Negro, Luca
Ornigotti, Marco
01 / 2024
APL Photonics
016105
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202405306480
https://urn.fi/URN:NBN:fi:tuni-202405306480
Kuvaus
Peer reviewed
Tiivistelmä
In this paper, we introduce a fully non-perturbative approach for the description of the optical nonlinearity of epsilon-near-zero (ENZ) media. In particular, based on the rigorous Feynman path integral method, we develop a dressed Lagrangian field theory for light-matter interactions and discuss its application to dispersive Kerr-like media with order-of-unity light-induced refractive index variations. Specifically, considering the relevant case of Indium Tin Oxide (ITO) nonlinearities, we address the novel regime of non-perturbative refractive index variations in ENZ media and establish that it follows naturally from a scalar field theory with a Born-Infeld Lagrangian. Moreover, we developed a predictive model that includes the intrinsic saturation effects originating from the light-induced modification of the Drude terms in the linear dispersion of ITO materials. Our results extend the Huttner-Barnett-Bechler electrodynamics model to the case of non-perturbative optical Kerr-like media providing an intrinsically nonlinear, field-theoretic framework for understanding the exceptional nonlinearity of ITO materials beyond traditional perturbation theory.
Kokoelmat
- TUNICRIS-julkaisut [22418]