论文标题

MNBI2TE4中的磁场控制晶格导热率

Magnetic field-controlled lattice thermal conductivity in MnBi2Te4

论文作者

Vu, Dung D., Nelson, Ryan A., Wooten, Brandi L., Barker, Joseph, Goldberger, Joshua E., Heremans, Joseph P.

论文摘要

通常不理解声子特性和晶格导热率对磁场敏感。使用施加的场来改变抗铁磁(AFM),CANTED(CAFM)和铁电磁(FM)阶段之间的MNBI2TE4,我们发现了一种控制晶格导热率的新方法,同时产生了正磁场和负磁场依赖性。我们报告了从2K到30k的MNBI2TE4沿跨平面方向施加的磁场下的平面磁场下的热导率k的场依赖性。 k在AFM相中随场的降低,在CAFM相中饱和,并在FM相中随场而增加。我们用场诱导的镁间隙变化来解释这一点,这修改了通过能量保护允许使用哪些镁散射过程。我们还报告了以相同配置测量的磁性模型系数,NERNST系数和热室数据。这一发现可能打开了一种设计磁性热开关的方法。

Phonon properties and the lattice thermal conductivity are not generally understood to be sensitive to magnetic fields. Using an applied field to change MnBi2Te4 between antiferromagnetic (AFM), canted (CAFM) and ferromagnetic (FM) phases we discovered a new way to control the lattice thermal conductivity, generating both a positive and a negative magnetic field dependence. We report the field dependence of the thermal conductivity, k, in the in-plane direction under an applied magnetic field along the cross-plane direction in MnBi2Te4 from 2K to 30K. k decreases with field in the AFM phase, saturates in the CAFM phase, and increases with field in the FM phase. We explain this in terms of the field-induced changes of the magnon gap which modifies which magnon-phonon scattering processes are allowed by energy conservation. We also report magneto-Seebeck coefficient, Nernst coefficient and thermal Hall data measured in the same configuration. This finding may open a way to design magnetically controlled heat switches.

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