PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 8, 2026Beilstein Journal of Nanotechnology2 citationsOpen Access

Multilayered hyperbolic Au/TiO 2 nanostructures for enhancing the nonlinear response around the epsilon-near-zero point

FAFernando Arturo Araiza-SixtosMRM. Gómez RoblesTZTingting Zhai

Key Points

  • The aim is to explore the optical properties and nonlinear response of multilayered Au/TiO2 nanostructures around their epsilon-near-zero point.
  • Fabrication of Au/TiO2 samples using Joule effect and electron beam evaporation techniques.
  • Characterization of linear optical properties using spectrophotometry and spectral ellipsometry.
  • Investigation of nonlinear response with the z-scan technique employing a Ti:sapphire femtosecond laser.
  • Found a nonlinear refractive index of n2 = 0.103 ± 0.006 cm2·GW−1.
  • Observed significant enhancement of nonlinear response at an ENZ point around 800 nm.
  • Identified cumulative thermal effects from high pulse repetition rates affecting the measurements.

Abstract

In this work, we present the design, fabrication, and study of the optical properties of multilayered metal–dielectric Au/TiO 2 structures. The samples were fabricated using Joule effect evaporation for gold and electron beam evaporation for titanium dioxide. Their structure was designed to have an epsilon-near-zero (ENZ) point at different wavelengths around 800 nm, in order to study their nonlinear response as a function of the resonance conditions around the ENZ point. The characterization of the linear properties of the samples was done using spectrophotometry and spectral ellipsometry. We studied the nonlinear response with the z-scan technique at different incident irradiances using a Ti:sapphire femtosecond laser, enabling us to characterize both the refractive and absorptive contributions to the nonlinear response. Due to the high pulse repetition rate inherent to Ti:sapphire systems and the presence of linear absorption in the samples, cumulative pulse-to-pulse thermal effects may be present. A modified version of the z-scan technique that allowed us to separate the electronic from the thermal contribution was used. A clear enhancement of the nonlinear response was observed for the sample with an ENZ point around the laser wavelength 800 nm with a nonlinear refractive index of n 2 = 0.103 ± 0.006 cm 2 ·GW −1 , a value that is comparable to other ENZ materials in literature.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Araiza-Sixtos et al. (2026) studied this question.

synapsesocial.com/papers/698827b40fc35cd7a8846991https://doi.org/10.3762/bjnano.17.17
Ask AI
Helpful
Bookmark
Share
View Full Paper