from    
to    
search  

 


AIR学术沙龙第36期|人工智能医疗保健和虚拟世界的可穿戴传感器和触觉技术
先立后破?实现双碳目标
迎接生物药制造的第四次浪潮-
支撑未来海量资源接入,电力系统通用信息模型(CIM)发展探讨
报告题目:
Computational spin caloritronics
 报告人:
夏钶
Department of Physics, BUN
报告时间:
2016-03-03 16:00
报告地点:
理学院郑裕彤讲堂
主办单位:
物理系
  简介:

摘要:

Magnetization dynamics can be excited and detected electrically and thermally by metal contacts, which makes it a wonderful spin energy material. The crucial parameter for ferromagnet(F)|normal metal(N) interfaces is the spin mixing conductance that governs the absorption of a transverse spin current and the spin transfer torque. However, the spin-mixing conductance is a purely nonrelativistic concept, while there is mounting evidence that spin-orbit interactions at interfaces generate additional spin-flips and spin-orbit torques. We have solved this issue by introducing an “effective” spin mixing conductance for weakly relativistic materials. First ab initio results on ferrite|metal interface indeed indicate an enhancement that can be very significant for selected crystal orientations.
 

Massive particles, i.e. the electrons, as well as quasi particles, i.e. magnons, can carry a thermal spin current that generates torques at the interfaces. Based on the same theoretical frame as effective mixing conductance, we compute both kind of torques for magnetic tunnel junctions from first principles in order to validate their spin transfer power efficiency, switching speed, etc.

今日相关信息
Modeling for environment and safety
 
同类别相关信息
Full quantum nature of water: A stu...
The Road for 2D Semiconductor in Si...
世纪物理情系列讲座(第6讲)-Computa...
基于气态原子系综的量子信息研究
世纪物理情系列讲座 第4讲:Quantum i...
学术活动