论文标题

从$π$分析的轨道拓扑,从$π$的三维狄拉克半学中的磁量子振荡的相移

Orbit topology analysed from $π$ phase shift of magnetic quantum oscillations in three-dimensional Dirac semimetal

论文作者

Lee, Sang-Eon, Oh, Myeong-jun, Ji, Sanghyun, Kim, Jinsu, Jun, Jin Hyun, Kang, Woun, Jo, Younjung, Jung, Myung-Hwa

论文摘要

随着狄拉克·费米(Dirac Fermion)物理的出现,在冷凝物质领域中,磁量子振荡(MQO)已被用来辨别狄拉克材料中轨道的拓扑。但是,许多以前的研究人员都依靠单轨LIFSHIFTZ-KOSEVICH公式,该公式忽略了退化轨道对MQO的显着影响。由于单轨LK公式适用于具有较小的回旋质量的无质量狄拉克半法,因此必须概括适用于广泛的DIRAC半法的方法,无论是无质量的还是质量的。该报告演示了自旋排级轨道如何影响三维巨大狄拉克半学,nbsb $ _2 $的MQO中的相位。随着磁场的方向的变化,由于自旋排级轨道之间的干扰,观察到突然的$π$相移。我们研究了回旋质量对$π$相位移位的影响,并验证了其与Zeeman耦合相对于相位的密切关系。 We find that the $π$ phase shift occurs when the cyclotron mass is 1/2 of the electron mass, indicating the effective spin gyromagnetic ratio is $g_s$ = 2. Our approach is not only useful for analysing MQOs of massless Dirac semimetals with a small cyclotron mass, but also can be used for MQOs in massive Dirac materials with degenerate orbits, especially in topological materials with a sufficiently large回旋质量。此外,此方法提供了一种有用的方法来估计材料的精确$ g_s $值。

With the emergence of Dirac fermion physics in the field of condensed matter, magnetic quantum oscillations (MQOs) have been used to discern the topology of orbits in Dirac materials. However, many previous researchers have relied on the single-orbit Lifshiftz-Kosevich formula, which overlooks the significant effect of degenerate orbits on MQOs. Since the single-orbit LK formula is valid for massless Dirac semimetals with small cyclotron masses, it is imperative to generalize the method applicable to a wide range of Dirac semimetals, whether massless or massive. This report demonstrates how spin-degenerate orbits affect the phases in MQOs of three-dimensional massive Dirac semimetal, NbSb$_2$. With varying the direction of the magnetic field, an abrupt $π$ phase shift is observed due to the interference between the spin-degenerate orbits. We investigate the effect of cyclotron mass on the $π$ phase shift and verify its close relation to the phase from the Zeeman coupling. We find that the $π$ phase shift occurs when the cyclotron mass is 1/2 of the electron mass, indicating the effective spin gyromagnetic ratio is $g_s$ = 2. Our approach is not only useful for analysing MQOs of massless Dirac semimetals with a small cyclotron mass, but also can be used for MQOs in massive Dirac materials with degenerate orbits, especially in topological materials with a sufficiently large cyclotron mass. Furthermore, this method provides a useful way to estimate the precise $g_s$ value of the material.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源