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外力应变对Bi2Se3拓扑绝缘体能带调控的第一性原理研究
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作者 连如乾 吴丽铃 +3 位作者 黄雨馨 阮毓荣 黄志高 张健敏 《福建师范大学学报(自然科学版)》 CAS CSCD 北大核心 2017年第4期21-26,共6页
采用密度泛函理论(DFT)的第一性原理方法,研究了拓扑绝缘体Bi_2Se_3在外力应变作用下的电子结构变化.首先对Bi_2Se_3块体结构在不同外力应变下进行了充分的原子弛豫,得到稳定的构型.主要通过改变初始结构的晶格常数的方法来构建沿层内... 采用密度泛函理论(DFT)的第一性原理方法,研究了拓扑绝缘体Bi_2Se_3在外力应变作用下的电子结构变化.首先对Bi_2Se_3块体结构在不同外力应变下进行了充分的原子弛豫,得到稳定的构型.主要通过改变初始结构的晶格常数的方法来构建沿层内施加外力应变的模型.接着通过能带、态密度(DOS)等分析手段研究不同外力应变下Bi_2Se_3的电子结构演化.研究结果表明:施加应变会使Bi_2Se_3的体能带发生偏移,偏移的幅度与应变大小相关,在压力应变逐渐加大的过程中Γ点附近的能带上移,并能够观察到M形的反转能带,而在拉应变增大的过程中Γ点附近的能带下移,且没有明显的能带反转现象,这些变化导致了Bi_2Se_3经历从半导体到导体的转变. 展开更多
关键词 拓扑绝缘体 Bi2Se3 能带结构 外力应变
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Resistivity and thermal infrared precursors associated with cemented backfill mass 被引量:5
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作者 XU Wen-bin 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2329-2335,共7页
The stability of cemented backfill mass is important to keep miners and equipment safe in underground backfill miming.The stress-strain behavior, resistivity and thermal infrared(TIR) characteristics of backfill mass ... The stability of cemented backfill mass is important to keep miners and equipment safe in underground backfill miming.The stress-strain behavior, resistivity and thermal infrared(TIR) characteristics of backfill mass under uniaxial compression were investigated. The monitoring system consisted of a TIR observation system, a stress-strain monitoring system and a resistivity measurement system. Precursory information for impending failure of cemented backfill mass was collected, including TIR, strain and resistivity precursors. The sensitivity and difference of different monitoring information to the same failure event were compared.The results show that the time-space evolution process of the resistivity and TIR is basically the same as the whole process from compression deformation to failure of backfill mass, and the time variation of resistivity and TIR is obviously characterized by stage.The resistivity precursor turns out earlier than the TIR and the strain. The resistivity relation with loading compression is anti-symmetry, decreasing as the compression stress increases before the peak strength of backfill mass. However, when the backfill mass enters into the phase of failure, the resistivity starts to increase as the stress increases. The change of the resistivity growth direction can be regarded as the resistivity-caution-point for the failure of backfill mass under uniaxial compression. It is also indicated that the TIR information mainly represents the surface temperature evolution in the process of compression before the backfill enters into the plastic-yield state. It can be a valuable tool to obtain the precursors for failure of cemented backfill mass for backfill mines. 展开更多
关键词 cemented backfill mass thermal infrared characteristic RESISTIVITY uniaxial compression
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