能斯特方程
能斯特效应
温度梯度
度量(数据仓库)
线性
热电效应
凝聚态物理
塞贝克系数
材料科学
浓度梯度
功能(生物学)
电位梯度
常量(计算机编程)
热力学
物理
化学
计算机科学
量子力学
环境化学
生物
进化生物学
数据库
程序设计语言
电极
作者
Q. Feng,Tianhui Zhu,Yu Jian,Wei Yuan,Huimin Peng,Jinrui Zhong,Junxi Duan,Mona Zebarjadi
标识
DOI:10.1088/1361-6463/ac923f
摘要
Abstract The discovery of two-dimensional (2D) ferromagnets and antiferromagnets with topologically nontrivial electronic band structures makes the study of the Nernst effect in 2D materials of great importance and interest. To measure the Nernst coefficient of 2D materials, the detection of the temperature gradient is crucial. Although the micro-fabricated metal wires provide a simple but accurate way for temperature detection, a linear-response assumption that the temperature gradient is a constant is still necessary and has been widely used to evaluate the temperature gradient. However, with the existence of substrates, this assumption cannot be precise. In this study, we clearly show that the temperature gradient strongly depends on the distance from the heater by both thermoelectric transport and thermoreflectance measurements. Fortunately, both measurements show that the temperature gradient can be well described by a linear function of the distance from the heater. This linearity is further confirmed by comparing the measured Nernst coefficient to the value calculated from the generalized Mott’s formula. Our results demonstrate a precise way to measure the Nernst coefficient of 2D materials and would be helpful for future studies.
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