以Web of Science核心合集SCI/SSCI中收录的图情领域大语言模型的相关文献为研究对象,借助文献计量可视化工具Biblioshiny,综合运用统计分析、文献计量学及文本分析方法开展定量与定性相结合的研究,通过热点聚类、演化路径及未来方向预...以Web of Science核心合集SCI/SSCI中收录的图情领域大语言模型的相关文献为研究对象,借助文献计量可视化工具Biblioshiny,综合运用统计分析、文献计量学及文本分析方法开展定量与定性相结合的研究,通过热点聚类、演化路径及未来方向预测等维度的分析,并借助不同分析结论的相互印证,全面系统地剖析图情领域大语言模型应用的研究现状与发展趋势。研究明确了图情领域大语言模型应用的四大核心发展方向:持续向跨领域应用场景深度拓展、聚焦模型性能精准化优化、构建动态化伦理治理体系、探索人机协同创新模式。展开更多
We use the method of discrete dipole approximation with surface interaction to construct a model in which a plurality of nanoparticles is arranged on the surface of BK7 glass. Nanoparticles are in air medium illuminat...We use the method of discrete dipole approximation with surface interaction to construct a model in which a plurality of nanoparticles is arranged on the surface of BK7 glass. Nanoparticles are in air medium illuminated by evanescent wave generated from total internal reflection. The effects of the wavelength, the polarization of the incident wave, the number of nanoparticles and the spacing of multiple nanoparticles on the field enhancement and extinction efficiency are calculated by our model. Our work could pave the way to improve the field enhancement of multiple nanoparticles systems.展开更多
文摘以Web of Science核心合集SCI/SSCI中收录的图情领域大语言模型的相关文献为研究对象,借助文献计量可视化工具Biblioshiny,综合运用统计分析、文献计量学及文本分析方法开展定量与定性相结合的研究,通过热点聚类、演化路径及未来方向预测等维度的分析,并借助不同分析结论的相互印证,全面系统地剖析图情领域大语言模型应用的研究现状与发展趋势。研究明确了图情领域大语言模型应用的四大核心发展方向:持续向跨领域应用场景深度拓展、聚焦模型性能精准化优化、构建动态化伦理治理体系、探索人机协同创新模式。
基金supported by the Zhejiang Provincial Natural Science Foundation of China(No.LGF20C050001)the National Nature Science Foundation of China(No.61805213)。
文摘We use the method of discrete dipole approximation with surface interaction to construct a model in which a plurality of nanoparticles is arranged on the surface of BK7 glass. Nanoparticles are in air medium illuminated by evanescent wave generated from total internal reflection. The effects of the wavelength, the polarization of the incident wave, the number of nanoparticles and the spacing of multiple nanoparticles on the field enhancement and extinction efficiency are calculated by our model. Our work could pave the way to improve the field enhancement of multiple nanoparticles systems.