论文标题
自旋材料和设备中的热效应:实验者指南
Thermal effects in spintronic materials and devices: an experimentalist's guide
论文作者
论文摘要
旋转技术的研究通常涉及在纳米级磁系统中产生热量。当研究外部施加的温度差或无意的情况下,由于驱动相对较大的电荷电流通过微小的结构而产生的效果时,这种热量产生可能是故意的。理解和控制这些热梯度可能会给实验者带来挑战,这在一定层面上与热流相比,热流比电荷流程更难分离和操纵。本文旨在提供一个简单,直观的框架,以了解涉及热梯度的自旋材料和设备中出现的基本问题。第一个目标是提供简单的工具,以证明在散装基板上薄膜的系统中如何产生热梯度。主要的结果是,垂直于在宏观底物上支撑的薄膜平面的热梯度指向的热梯度也很常见,即使系统中该系统中最大的温度下降也将在整个块状底物本身中存在。这些结果表明,需要了解可以产生电压信号以及对热梯度的其他响应的热电和磁透明效应的范围。我简要审查了这些,以及相关的旋转效果。该评论以示例和评论结束,并评论热梯度起着关键作用的Spintronics中的几个重要问题。
Research in spintronics often involves generation of heat in nanoscale magnetic systems. This heat generation can be intentional, as when studying effects created by an external applied temperature difference, or unintentional, coming as a consequence of driving relatively large charge currents through tiny structures. Understanding and controlling these thermal gradients can present challenges to experimentalists, which are related at some level to the fact that heat flow is much more difficult to isolate and manipulate than charge flow. This paper aims to provide a simple, intuitive framework to understand the fundamental issues that arise in spintronic materials and devices involving thermal gradients. The first goal is to provide simple tools to demonstrate how thermal gradients arise in systems with thin conducting films on bulk substrates. The main results are that a thermal gradient pointing perpendicular to the plane of a thin film supported on a macroscopic substrate is very common, even while the largest temperature drop in the system will exist across the bulk substrate itself. These results point to the need to understand the range of thermoelectric and magnetothermoelectric effects that can generate voltage signals and other responses to thermal gradients. I provide a brief review of these, along with relevant spin effects. The review concludes with examples and comments on several important ongoing issues in spintronics where thermal gradients play key roles.