Xifeng YangYushen LiuJinfu FengXue‐Feng Wang
Using the first-principles methods, we investigate the thermospin properties of a two-probe model based on zigzag-edge silicene nanoribbons (ZSiNRs). Compared with the odd-width ZSiNRs, the spin Seebeck coefficient of the even-width ZSiNRs is obviously enhanced at room temperature. This fact is attributed to a nearly perfect symmetry of the linear conductance gap with the different spin index with respect to the Fermi level induced by the different parity of the wave functions. More interestingly, the corresponding charge Seebeck coefficient is near zero. Therefore, when a thermal bias is presented in the even-width ZSiNRs, a nearly pure spin current is achieved. Meanwhile, the spin polarization of the current approaches infinite.
Liyan LinYue JiangXinyi GaoYan-Dong GuoHong-Li ZengXiaohong Yan
Gang GuoZhong-Xiang XieJie TangYong ZhangGuobao Xu
X.Q. DengZhen Hua ZhangGui-Ping TangZhi-Qiang FanChen Yang
Nam B. LeTran Doan HuanLilia M. Woods
Jiali SongXue ZhangXue‐Feng WangJinfu FengYushen Liu