rashba spin splitting
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2022 ◽  
Vol 135 ◽  
pp. 114944
Author(s):  
Qiong Peng ◽  
Yong Lei ◽  
Xiaohui Deng ◽  
Jiao Deng ◽  
Guang Wu ◽  
...  

Author(s):  
Preeti Bhumla ◽  
Deepika Gill ◽  
Sajjan Sheoran ◽  
Saswata Bhattacharya

2021 ◽  
Vol 104 (8) ◽  
Author(s):  
Lei Sun ◽  
Xikui Ma ◽  
Jian Liu ◽  
Mingwen Zhao

2021 ◽  
Vol 104 (8) ◽  
Author(s):  
Chiranjit Mondal ◽  
Chanchal K. Barman ◽  
Aftab Alam ◽  
Biswarup Pathak

2021 ◽  
Author(s):  
Zhenzhen Qin

In recent years, the application of thermoelectricity has become more and more widespread. Thermoelectric materials provide a simple and environmentally friendly solution for the direct conversion of heat to electricity. The development of higher performance thermoelectric materials and their performance optimization have become more important. Generally, to improve the ZT value, electrical conductivity, Seebeck coefficient and thermal conductivity must be globally optimized as a whole object. However, due to the strong coupling among ZT parameters in many cases, it is very challenging to break the bottleneck of ZT optimization currently. Beyond the traditional optimization methods (such as inducing defects, varying temperature), the Rashba effect is expected to effectively increase the S2σ and decrease the κ, thus enhancing thermoelectric performance, which provides a new strategy to develop new-generation thermoelectric materials. Although the Rashba effect has great potential in enhancing thermoelectric performance, the underlying mechanism of Rashba-type thermoelectric materials needs further research. In addition, how to introduce Rashba spin splitting into current thermoelectric materials is also of great significance to the optimization of thermoelectricity.


2021 ◽  
Vol 103 (24) ◽  
Author(s):  
Hanyoung Ryu ◽  
Jae-Mo Lihm ◽  
Joonil Cha ◽  
Beomyoung Kim ◽  
Beom Seo Kim ◽  
...  

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