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首页> 外文期刊>Chemical and Materials Engineering >Band Structure, Metallization and Superconducting Transition Of Group III-V Semiconductors AlP And AlAs Under High Pressure
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Band Structure, Metallization and Superconducting Transition Of Group III-V Semiconductors AlP And AlAs Under High Pressure

机译:高压下III-V族半导体AlP和AlAs的能带结构,金属化和超导转变

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摘要

The results of a full potential linear muffin-tin orbital (FP-LMTO) study on the electronic properties of cubic zinc blende type group III-V semiconductors AlP and AlAs under pressure are presented. The equilibrium lattice constant, bulk modulus, pressure derivative of bulk modulus and the phase transition pressure at which the compounds undergo structural phase transition from ZnS to NaCl and NaCl to CsCl are predicted from the total energy calculations. The ground state properties and band gap values are compared with the experimental results. At normal pressure AlP and AlAs are indirect bandgap semiconductors. When the pressure is increased there is enhanced overlapping between the wave functions of the neighbouring atoms. As a result the widths of the valence and empty conduction bands increase. These changes lead to the narrowing and indirect closing of band gaps in AlP and AlAs (metallization). On further increase of pressure, AlP and AlAs become superconductors, and these materials come under the class of electron-phonon-mediated high pressure superconductors. The superconducting transition temperatures (Tc) of AlP and AlAs are obtained as a function of pressure for CsCl structure. It is also confirmed that the metallization, structural phase transition and onset of superconductivity do not occur simultaneously in these compounds.
机译:提出了全势线性松饼-锡轨道(FP-LMTO)的研究结果,该研究对处于压力下的立方锌混合型III-V型半导体AlP和AlAs的电子性能进行了研究。从总能量计算中可以预测出化合物的平衡晶格常数,体积模量,体积模量的压力导数以及化合物从ZnS转变为NaCl和NaCl转变为CsCl的结构相变压力。将基态性质和带隙值与实验结果进行比较。在常压下,AlP和AlAs是间接带隙半导体。当压力增加时,相邻原子的波函数之间的重叠就会增强。结果,价态和空导带的宽度增加。这些变化导致AlP和AlAs(金属化)中带隙的缩小和间接闭合。随着压力的进一步增加,AlP和AlAs成为超导体,这些材料属于电子声子介导的高压超导体。获得了AlP和AlAs的超导转变温度(Tc)作为CsCl结构压力的函数。还证实在这些化合物中不会同时发生金属化,结构相变和超导电性的开始。

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