Li Junxue, Shi Zhong, Ortiz Victor H, Aldosary Mohammed, Chen Cliff, Aji Vivek, Wei Peng, Shi Jing
Department of Physics and Astronomy, University of California, Riverside, California 92521, USA.
School of Physics Science and Engineering, Tongji University, Shanghai 200092, China.
Phys Rev Lett. 2019 May 31;122(21):217204. doi: 10.1103/PhysRevLett.122.217204.
We report a longitudinal spin Seebeck effect (SSE) study in epitaxially grown FeF_{2}(110) antiferromagnetic (AFM) thin films with strong uniaxial anisotropy over the temperature range of 3.8-250 K. Both the magnetic-field and temperature-dependent SSE signals below the Néel temperature (T_{N}=70 K) of the FeF_{2} films are consistent with a theoretical model based on the excitations of AFM magnons without any net induced static magnetic moment. In addition to the characteristic low-temperature SSE peak associated with the AFM magnons, there is another SSE peak at T_{N} which extends well into the paramagnetic phase. All the SSE data taken at different magnetic fields up to 12 T near and above the critical point T_{N} follow the critical scaling law very well with the critical exponents for magnetic susceptibility of 3D Ising systems, which suggests that the AFM spin correlation is responsible for the observed SSE near T_{N}.
我们报道了在温度范围为3.8 - 250 K的外延生长的具有强单轴各向异性的FeF₂(110)反铁磁(AFM)薄膜中的纵向自旋塞贝克效应(SSE)的纵向研究。在FeF₂薄膜的奈尔温度(Tₙ = 70 K)以下,磁场和温度相关的SSE信号均与基于反铁磁磁振子激发且无任何净感应静磁矩的理论模型一致。除了与反铁磁磁振子相关的特征低温SSE峰外,在Tₙ处还有另一个SSE峰,该峰一直延伸到顺磁相。在临界点Tₙ附近及以上高达12 T的不同磁场下获取的所有SSE数据都非常好地遵循临界标度律,其磁导率的临界指数符合三维伊辛系统,这表明反铁磁自旋关联是在Tₙ附近观察到的SSE的原因。