期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Adaptive genetic algorithm-based design of gamma-graphyne nanoribbon incorporating diamond-shaped segment with high thermoelectric conversion efficiency
1
作者 陆静远 崔春凤 +4 位作者 欧阳滔 李金 何朝宇 唐超 钟建新 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第4期109-117,共9页
The gamma-graphyne nanoribbons(γ-GYNRs) incorporating diamond-shaped segment(DSSs) with excellent thermoelectric properties are systematically investigated by combining nonequilibrium Green’s functions with adaptive... The gamma-graphyne nanoribbons(γ-GYNRs) incorporating diamond-shaped segment(DSSs) with excellent thermoelectric properties are systematically investigated by combining nonequilibrium Green’s functions with adaptive genetic algorithm. Our calculations show that the adaptive genetic algorithm is efficient and accurate in the process of identifying structures with excellent thermoelectric performance. In multiple rounds, an average of 476 candidates(only 2.88% of all16512 candidate structures) are calculated to obtain the structures with extremely high thermoelectric conversion efficiency.The room temperature thermoelectric figure of merit(ZT) of the optimal γ-GYNR incorporating DSSs is 1.622, which is about 5.4 times higher than that of pristine γ-GYNR(length 23.693 nm and width 2.660 nm). The significant improvement of thermoelectric performance of the optimal γ-GYNR is mainly attributed to the maximum balance of inhibition of thermal conductance(proactive effect) and reduction of thermal power factor(side effect). Moreover, through exploration of the main variables affecting the genetic algorithm, it is revealed that the efficiency of the genetic algorithm can be improved by optimizing the initial population gene pool, selecting a higher individual retention rate and a lower mutation rate. The results presented in this paper validate the effectiveness of genetic algorithm in accelerating the exploration of γ-GYNRs with high thermoelectric conversion efficiency, and could provide a new development solution for carbon-based thermoelectric materials. 展开更多
关键词 adaptive genetic algorithm thermoelectric material diamond-like quantum dots gamma-graphyne nanoribbon
下载PDF
Coexistence of giant Rashba spin splitting and quantum spin Hall effect in H–Pb–F
2
作者 薛文明 李金 +3 位作者 何朝宇 欧阳滔 戴雄英 钟建新 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第3期414-418,共5页
Rashba spin splitting(RSS)and quantum spin Hall effect(QSHE)have attracted enormous interest due to their great significance in the application of spintronics.In this work,we theoretically proposed a new two-dimension... Rashba spin splitting(RSS)and quantum spin Hall effect(QSHE)have attracted enormous interest due to their great significance in the application of spintronics.In this work,we theoretically proposed a new two-dimensional(2D)material H–Pb–F with coexistence of giant RSS and quantum spin Hall effec by using the ab initio calculations.Our results show that H–Pb–F possesses giant RSS(1.21 eV·A)and the RSS can be tuned up to 4.16 e V·A by in-plane biaxial strain,which is a huge value among 2D materials.Furthermore,we also noticed that H–Pb–F is a 2D topological insulator(TI)duo to the strong spin–orbit coupling(SOC)interaction,and the large topological gap is up to 1.35 e V,which is large enough for for the observation of topological edge states at room temperature.The coexistence of giant RSS and quantum spin Hall effect greatly broadens the potential application of H–Pb–F in the field of spintronic devices. 展开更多
关键词 COEXISTENCE Rashba spin splitting quantum spin Hall effect spin–orbit coupling
下载PDF
应用强震动观测资料估算2014年鲁甸M_S6.5地震震源参数
3
作者 崔建文 段建新 +2 位作者 杨黎薇 钟玉盛 赵昆 《地震研究》 CSCD 北大核心 2016年第4期605-612,717,共8页
通过对2014年鲁甸MS6.5地震13个强震动台站观测记录的谱分析,估算了地震矩、矩震级等震源参数,得到的平均矩震级MW=6.3。讨论了震源Brune模型位移谱形状系数以及局部场地条件对估算参数的影响,结果显示,谱形状系数对参数估算影响不大,但... 通过对2014年鲁甸MS6.5地震13个强震动台站观测记录的谱分析,估算了地震矩、矩震级等震源参数,得到的平均矩震级MW=6.3。讨论了震源Brune模型位移谱形状系数以及局部场地条件对估算参数的影响,结果显示,谱形状系数对参数估算影响不大,但ω2和ω3源谱模型分别能与远场和近场记录获取的源谱吻合更好;同时,仅在场地的卓越频率小于1 Hz时,场地条件影响参数的估算,由于13个台站均处于Ⅰ-Ⅱ类场地上,局部场地条件对本文参数计算结果影响不大。 展开更多
关键词 鲁甸地震 强震动记录 震源参数 位移谱
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部