论文标题
手性异常引起的非线性NernST和热厅效应Weyl半金属
Chiral anomaly induced nonlinear Nernst and thermal Hall effects in Weyl semimetals
论文作者
论文摘要
手性异常或Adler-Bell-Jackiw在Weyl半法(WSMS)中对电子传输行为具有重大影响,从而导致在电磁量规场的存在下导致显着的纵向或平面电气或平面电气和平面电气和热电传输现象。这些现象是在存在平行电动($ \ MathBf {e} $)和磁性($ \ Mathbf {b} $)fields($ \ MathBf {$ \ MathBf {e \ cdot b} b} \ neq 0 $(neq 0 $)或neq neq neq ne n n n n n n Neq 0 $(Mathbf)\ cdot(b cdot)的情况下($ \ mathbf {e} $)和磁性($ \ MATHBF {b} $),手力异常引起的手性电荷和能量的后果0)$($ \ Mathbf {\ nabla} t $是热梯度)。在这里,我们在这里提出了另外两个引人入胜的传输特性,即,在WSMS中,在$ \ mathbf {b \ cdot \ nabla} t \ neq 0 $的情况下,手性异常引起的非线性平面效应和非线性平面热霍尔效应。使用半古典玻尔兹曼传输理论,我们得出了手性异常的分析表达式,诱导非线性Nernst和热室传输系数,并评估非线性方向上它们之间的基本数学关系。我们在目前的工作中发现的公式与最近由浆果曲率偶极子引起的非线性异常电和热电效应所预测的公式一致。此外,与最近的工作相反,通过利用具有内在手性化学潜力的晶格Weyl Hamiltonian,我们发现手性异常诱导的非线性平面效应即使对于一对相反的倾斜或非倾斜的Weyl锥,在时间逆转和倒置中,WSM也可能存在。手性异常引起的非线性平面效应以及相关的参数依赖性在实验中可以在现实的WSM中实现。
Chiral anomaly or Adler-Bell-Jackiw anomaly in Weyl semimetals (WSMs) has a significant impact on the electron transport behaviors, leading to remarkable longitudinal or planar electrical and thermoelectric transport phenomena in the presence of electromagnetic gauge fields. These phenomena are consequences of the imbalanced chiral charge and energy induced by chiral anomaly in the presence of parallel electric ($\mathbf{E}$) and magnetic ($\mathbf{B}$) fields ($\mathbf{E \cdot B }\neq 0$) or $(\mathbf{B \cdot \nabla }T\neq 0)$ ($\mathbf{\nabla}T$ is the thermal gradient). We here propose another two fascinating transport properties, namely, the nonlinear planar Nernst effect and nonlinear planar thermal Hall effect induced by chiral anomaly in the presence of $\mathbf{B \cdot \nabla}T\neq 0$ in WSMs. Using the semiclassical Boltzmann transport theory, we derive the analytical expressions for the chiral anomaly induced nonlinear Nernst and thermal Hall transport coefficients and also evaluate the fundamental mathematical relations among them in the nonlinear regime. The formulas we find in this current work are consistent with that predicted for the nonlinear anomalous electrical and thermoelectric effects induced by Berry curvature dipole recently. Additionally, in contrast to the recent work, by utilizing the lattice Weyl Hamiltonian with intrinsic chiral chemical potential, we find that the chiral anomaly induced nonlinear planar effects can exist even for a pair of oppositely tilted or non-tilted Weyl cones in both time reversal and inversion broken WSMs. The chiral anomaly induced nonlinear planar effects predicted here along with the related parameter dependencies are hence possible to be realized in realistic WSMs in experiment.