Post-2000 nonlinear optical materials and measurements: data tables and best practices

Post-2000 nonlinear optical materials and measurements: data tables and best practices
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2000 年后非线性光学材料和测量:数据表和最佳实践

DOI:
10.1088/2515-7647/ac9e2f
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发表时间:
2023
期刊:
Journal of Physics: Photonics
影响因子:
--
通讯作者:
Huttunen, Mikko J.
Huttunen, Mikko J.
中科院分区:
--
文献类型:
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作者:
Vermeulen, Nathalie;Espinosa, Daniel;Ball, Adam;Ballato, John;Boucaud, Philippe;Boudebs, Georges;Campos, Cecília L. A. V.;Dragic, Peter;Gomes, Anderson S. L.;Huttunen, Mikko J.

文献摘要

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在其存在的60年中,由于材料科学和技术的重大突破,非线性光学领域特别是在过去的20年里获得了发展势头。在这篇文章中,我们提出了一组新的数据表,列出了自2000年以来文献中报道的不同材料类别的非线性光学性质。数据表中收录了体相材料、溶剂、0D-1D-2D材料、超材料、光纤光波导材料、片上光波导材料、混合光波导系统以及适用于太赫兹非线性光学的材料等方面的代表性实验工作。除了数据表,我们还提供了执行和报告非线性光学实验的最佳实践。这些最佳做法是用于将论文列入表格的遴选过程的基础。虽然这些表格确实显示在过去二十年中该领域取得了很大进展,但我们鼓励非线性光学领域在今后的工作中实施已确定的最佳做法。这将允许对已公布的参数进行更充分的比较、解释和使用,从而进一步促进非线性光学科学和应用的全面进步。
In its 60 years of existence, the field of nonlinear optics has gained momentum especially over the past two decades thanks to major breakthroughs in material science and technology. In this article, we present a new set of data tables listing nonlinear-optical properties for different material categories as reported in the literature since 2000. The papers included in the data tables are representative experimental works on bulk materials, solvents, 0D–1D–2D materials, metamaterials, fiber waveguiding materials, on-chip waveguiding materials, hybrid waveguiding systems, and materials suitable for nonlinear optics at THz frequencies. In addition to the data tables, we also provide best practices for performing and reporting nonlinear-optical experiments. These best practices underpin the selection process that was used for including papers in the tables. While the tables indeed show strong advancements in the field over the past two decades, we encourage the nonlinear-optics community to implement the identified best practices in future works. This will allow a more adequate comparison, interpretation and use of the published parameters, and as such further stimulate the overall progress in nonlinear-optical science and applications.