首页> 外文期刊>Journal of the Physical Society of Japan >Novel Dirac Electron in Single-Component Molecular Conductor [Pd(dddt)(2)] (dddt=5,6-dihydro-1,4-dithiin-2,3-dithiolate)
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Novel Dirac Electron in Single-Component Molecular Conductor [Pd(dddt)(2)] (dddt=5,6-dihydro-1,4-dithiin-2,3-dithiolate)

机译:单组分分子导体中的新型DIRAC电子[Pd(DDDDT)(2)](DDDT = 5,6-二氢-1,4-二辛-2,3-二酸盐)

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摘要

Dirac electrons in a single-component molecular conductor [Pd(dddt)(2)] (dddt = 5,6-dihydro-1,4-dithiin-2,3-dithiolate) under pressure have been examined using a tight-binding model which consists of highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO) functions in four molecules per unit cell. The Dirac cone between the conduction and valence bands originates from the property that the HOMO has ungerade symmetry and the LUMO has gerade symmetry. The Dirac point forms a loop in the three-dimensional Brillouin zone, which is symmetric with respect to the plane of k(y) = 0, where k(y) is the intralayer momentum along the molecular stacking direction, i.e., with the largest (HOMO-HOMO, LUMO-LUMO) transfer energy. The parity at time reversal invariant momentum (TRIM) is calculated using the inversion symmetry around the lattice point of the crystal. It is shown that such an exotic Dirac electron can be understood from the parity of the wave function at the TRIM and also from an effective Hamiltonian.
机译:使用紧密结合模型研究了单组分分子导体中的Dirac电子[Pd(DDDT)(2)](DDDT = 5,6-二氢-1,4-二硫酸盐)(DDDT = 5,6-二氢-1,4-二硫酸盐)由每单位细胞4分子中的最高占用的分子轨道(HOMO)和最低未占用的分子轨道(LUMO)功能组成。导通和价带之间的狄拉科锥体源自HOMO具有未经记录的对称性,并且LUMO具有GERADE对称性。 DIRAC点在三维布里渊区中形成环,其相对于K(Y)= 0的平面是对称的,其中K(Y)是沿着分子堆叠方向的腔内动量,即最大(Homo-Homo,Lumo-Lumo)转移能量。使用晶格晶格的晶格对称来计算时间反转不变动量(修剪)的奇偶校验。结果表明,可以从修剪中的波浪函数的奇偶校验以及从有效的汉密尔顿人来理解这种异端狄拉科电子。

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