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通过¹⁸¹Ta四极共振探索TaP中的新兴外尔费米子激发

Emergent Weyl Fermion Excitations in TaP Explored by ^{181}Ta Quadrupole Resonance.

作者信息

Yasuoka H, Kubo T, Kishimoto Y, Kasinathan D, Schmidt M, Yan B, Zhang Y, Tou H, Felser C, Mackenzie A P, Baenitz M

机构信息

Max Planck Institute for Chemical Physics of Solids, 01187 Dresden, Germany.

Advanced Science Research Center, Japan Atomic Energy Agency, Tokai, Ibaraki 319-1195, Japan.

出版信息

Phys Rev Lett. 2017 Jun 9;118(23):236403. doi: 10.1103/PhysRevLett.118.236403.

Abstract

The ^{181}Ta quadrupole resonance [nuclear quadrupole resonance (NQR)] technique is utilized to investigate the microscopic magnetic properties of the Weyl semimetal TaP. We find three zero-field NQR signals associated with the transition between the quadrupole split levels for Ta with I=7/2 nuclear spin. A quadrupole coupling constant, ν_{Q}=19.250  MHz, and an asymmetric parameter of the electric field gradient, η=0.423, are extracted, in good agreement with band structure calculations. In order to examine the magnetic excitations, the temperature dependence of the spin-lattice relaxation rate (1/T_{1}T) is measured for the f_{2} line (±5/2↔±3/2 transition). We find that there exist two regimes with quite different relaxation processes. Above T^{}≈30  K, a pronounced (1/T_{1}T)∝T^{2} behavior is found, which is attributed to the magnetic excitations at the Weyl nodes with temperature-dependent orbital hyperfine coupling. Below T^{}, the relaxation is mainly governed by a Korringa process with 1/T_{1}T=const, accompanied by an additional T^{-1/2}-type dependence to fit our experimental data. We show that Ta NQR is a novel probe for the bulk Weyl fermions and their excitations.

摘要

利用(^{181}Ta)四极共振[核四极共振(NQR)]技术研究了外尔半金属TaP的微观磁性。我们发现了三个与(I = 7/2)核自旋的Ta的四极分裂能级之间跃迁相关的零场NQR信号。提取了四极耦合常数(\nu_Q = 19.250 MHz)和电场梯度的不对称参数(\eta = 0.423),与能带结构计算结果吻合良好。为了研究磁激发,测量了(f_2)线((\pm5/2\leftrightarrow\pm3/2)跃迁)的自旋 - 晶格弛豫率((1/T_1T))的温度依赖性。我们发现存在两种具有截然不同弛豫过程的状态。在(T^\approx30 K)以上,发现明显的((1/T_1T)\propto T^2)行为,这归因于具有温度依赖性轨道超精细耦合的外尔节点处的磁激发。在(T^)以下,弛豫主要由(1/T_1T = const)的科林加过程主导,并伴有额外的(T^{-1/2})型依赖性以拟合我们的实验数据。我们表明Ta NQR是探测体相外尔费米子及其激发的一种新型探针。

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