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◆ Optical Materials Express2026-03-16· Materials science

Systematic study of amorphous ABC heterostructures at the atomic scale as a second-order nonlinear optical metamaterial

Martin Mičulka, Jinsong Liu, Sebastian Beer, Raihan Rafi, Denys Sevriukov, Sergiy Yulin, Vladimir Roddatis, Stephan Gierth, Stefan Nolte, Sven Schröder, Isabelle Staude, Andreas Tünnermann, Adriana Szeghalmi

原始摘要(英文原文)· Original abstract
A systematic exploration of amorphous ABC heterostructures revealed that nanoscale morphological modifications markedly improved their artificial bulk second-order susceptibility. These amorphous birefringent heterostructures were fabricated using plasma-enhanced atomic layer deposition of three oxides, thereby breaking centrosymmetry at the nanoscale. We observe that the optical nonlinearity depends on the thickness variation of the three constituent materials, SiO 2 , TiO 2 , and Al 2 O 3 , ranging from tens of nanometers to the atomic scale, and where the thin films exhibit second-order susceptibility at their interfaces. Our findings reveal that the enhancement of nonlinear optical properties is strongly correlated with a high interface density and superior interface quality, where the interface second-order nonlinearity transitions to bulk-like second-harmonic generation. An effective bulk second-order susceptibility of χ zzz = 2.0 ± 0.2 pm/V at 1032 nm is achieved, comparable to some conventional monocrystalline nonlinear materials.
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Systematic study of amorphous ABC heterostructures at the atomic scale as a second-order nonlinear optical metamaterial — 科研速览 Science Skim