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金沙县云盘山晚二叠世含煤岩系沉积环境分析
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作者 周汝贤 段桂菊 廖国丽 《山东煤炭科技》 2023年第3期154-156,共3页
金沙云盘山地区煤炭资源丰富,含煤岩系较为发育,但对其沉积环境的研究相对薄弱,给区域煤炭资源勘查带来了一定的困难。基于区域地质背景,通过对含煤岩系钻孔岩芯进行沉积相分析,恢复了研究区主要可采煤层的沉积环境面貌,下三角洲平原为... 金沙云盘山地区煤炭资源丰富,含煤岩系较为发育,但对其沉积环境的研究相对薄弱,给区域煤炭资源勘查带来了一定的困难。基于区域地质背景,通过对含煤岩系钻孔岩芯进行沉积相分析,恢复了研究区主要可采煤层的沉积环境面貌,下三角洲平原为区域内可采煤层最重要的沉积环境类型,可作为本区下步煤炭资源勘查的重点方向。 展开更多
关键词 沉积环境 含煤岩系 晚二叠世 金沙
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Observation of fractal higher-order topological states in acoustic metamaterials 被引量:1
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作者 Shengjie Zheng Xianfeng Man +6 位作者 Ze-Lin Kong Zhi-Kang Lin Guiju Duan Ning Chen Dejie Yu Jian-Hua Jiang Baizhan Xia 《Science Bulletin》 SCIE EI CAS CSCD 2022年第20期2069-2075,M0004,共8页
Topological phases of matter have been extensively investigated in solid-state materials and classical wave systems with integer dimensions. However, topological states in non-integer dimensions remain almost unexplor... Topological phases of matter have been extensively investigated in solid-state materials and classical wave systems with integer dimensions. However, topological states in non-integer dimensions remain almost unexplored. Fractals, being self-similar on different scales, are one of the intriguing complex geometries with non-integer dimensions. Here, we demonstrate fractal higher-order topological states with unprecedented emergent phenomena in a Sierpin? ski acoustic metamaterial. We uncover abundant topological edge and corner states in the acoustic metamaterial due to the fractal geometry. Interestingly,the numbers of the edge and corner states depend exponentially on the system size, and the leading exponent is the Hausdorff fractal dimension of the Sierpin? ski carpet. Furthermore, the results reveal the unconventional spectrum and rich wave patterns of the corner states with consistent simulations and experiments. This study thus unveils unconventional topological states in fractal geometry and may inspire future studies of topological phenomena in non-Euclidean geometries. 展开更多
关键词 Higher-order topological states Topological fractals Sierpinski carpet Fractal dimensions Acoustic metamaterials
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