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New Candidate Multicomponent Chalcogenide Glasses for Supercontinuum Generation

DOI:10.3390/app8112082 期刊:Applied Sciences 出版年份:2018 更新时间:2025-09-09 09:28:46
摘要: Broadband supercontinuum (SC) generation requires host material attributes defined by both optical and physical properties and the material’s manufacturability. We review and define the trade-offs in these attributes as applied to fiber or planar film applications based on homogeneous glass property data, and provide a series of examples of how one might optimize such attributes through material compositional and morphology design. As an example, we highlight the role of varying composition, microstructure, and linear/nonlinear optical properties, such as transmittance, refractive index, and the multiphoton absorption coefficient, for a series of novel multicomponent chalcogenide glasses within a model GeSe2-As2Se3-PbSe (GAP-Se) system. We report key optical property variation as a function of composition and form, and discuss how such glasses, suitable for both fiber and planar film processing, could lend themselves as candidates for use in SC generation. We demonstrate the impact of starting glass composition and morphology and illustrate how tailoring composition and form (bulk versus film) leads to significant variation in linear, nonlinear, and dispersive optical property behavior within this system that enables design options that are attractive to optimization of desirable SC performance, based on optical composites.
作者: Claudia Goncalves,Myungkoo Kang,Byoung-Uk Sohn,Gufan Yin,Juejun Hu,Dawn T. H. Tan,Kathleen Richardson
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Investigating the potential of multicomponent chalcogenide glasses for supercontinuum generation in fiber or planar film applications.

The study demonstrates that novel multicomponent bulk GAP-Se ChG glasses exhibit high values of linear and nonlinear refractive indices which increase directly with Pb(Se) concentration, while maintaining high, broadband transparency, and low optical losses throughout the IR. The magnitudes of these optical parameters are found to be competitive with respect to those of commonly-used homogeneous ChG glasses in both linear and nonlinear optical regimes.

The study is limited by the current understanding of the nonlinear optical properties of chalcogenide glasses, especially in the mid-infrared and long-wave infrared spectral regions. Further research is needed to fully characterize the nonlinear properties of GAP-Se films in both their as-deposited amorphous and converted glass ceramic form.

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