Nonlinear Anisotropy in Phase-Tuned Wide-Gap Halides

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Main Authors: Scott, L. Landivar, Vogl, L. M., Klenke, C., Puri, S., Nakamura, H.
Format: Preprint
Published: 2025
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author Scott, L. Landivar
Vogl, L. M.
Klenke, C.
Puri, S.
Nakamura, H.
author_facet Scott, L. Landivar
Vogl, L. M.
Klenke, C.
Puri, S.
Nakamura, H.
contents Silver iodide (AgI) thin films offer a compelling platform for studying nonlinear optical phenomena due to their intrinsic noncentrosymmetric lattice and direct band gap. Here, we investigate the nonlinear optical properties of AgI thin films grown by physical vapor deposition that selectively produce zincblende (\zbAgI) and wurtzite (\wzAgI) phases. Using a combination of polarization-resolved second harmonic generation (SHG) and two-photon photoluminescence (2PPL) spectroscopy, we identify clear phase- and morphology-dependent anisotropic nonlinear responses. Triangular \zbAgI $(111)$ flakes exhibit sixfold SHG symmetry and isotropic 2PPL emission, while rod-shaped \wzAgI $(101)$ samples display twofold-symmetric patterns in both SHG and 2PPL, which are explained by polarization analysis using second- and third- order nonlinear susceptibilities. These findings establish AgI as a promising halide semiconductor platform for phase-selective nonlinear optics and quantum photonic applications.
format Preprint
id arxiv_https___arxiv_org_abs_2512_22409
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nonlinear Anisotropy in Phase-Tuned Wide-Gap Halides
Scott, L. Landivar
Vogl, L. M.
Klenke, C.
Puri, S.
Nakamura, H.
Optics
Materials Science
Silver iodide (AgI) thin films offer a compelling platform for studying nonlinear optical phenomena due to their intrinsic noncentrosymmetric lattice and direct band gap. Here, we investigate the nonlinear optical properties of AgI thin films grown by physical vapor deposition that selectively produce zincblende (\zbAgI) and wurtzite (\wzAgI) phases. Using a combination of polarization-resolved second harmonic generation (SHG) and two-photon photoluminescence (2PPL) spectroscopy, we identify clear phase- and morphology-dependent anisotropic nonlinear responses. Triangular \zbAgI $(111)$ flakes exhibit sixfold SHG symmetry and isotropic 2PPL emission, while rod-shaped \wzAgI $(101)$ samples display twofold-symmetric patterns in both SHG and 2PPL, which are explained by polarization analysis using second- and third- order nonlinear susceptibilities. These findings establish AgI as a promising halide semiconductor platform for phase-selective nonlinear optics and quantum photonic applications.
title Nonlinear Anisotropy in Phase-Tuned Wide-Gap Halides
topic Optics
Materials Science
url https://arxiv.org/abs/2512.22409