论文标题

多效Van der Waals异质结构FECL $ _2 $/sc $ _2 $ co $ _2 $:非挥发性电气可转换电子和旋转式属性

Multiferroic van der Waals heterostructure FeCl$_2$/Sc$_2$CO$_2$: Nonvolatile electrically switchable electronic and spintronic properties

论文作者

Cao, Liemao, Deng, Xiaohui, Zhou, Guanghui, Liang, Shi-Jun, Nguyen, Chuong V., Ang, L. K., Ang, Yee Sin

论文摘要

多效Van der Waals(VDW)异质块提供了一条令人兴奋的途径,通向新颖的纳米电子和Spintronics Device Technology。在这里,我们研究了由铁磁性FECL $ _2 $单层和铁电SC $ _2 $ CO $ _2 $单层使用First-Proinciples Monticles Ligithtiment Ligithty功能理论和量子传输模拟组成的多效VDW异质结构的电子和传输特性。我们表明,FECL $ _2 $/sc $ _2 $ CO $ _2 $异构结构可以通过电气调节SC $ _2 $ CO $ _2 $的铁电性极化状态来可逆地从半导体转变为半金属行为。有趣的是,半金属相具有III型损坏的间隙谱带比对,这可能对隧道效果晶体管的应用有益。我们基于\ emph {概念证明}两端纳米式的量子传输模拟,以证明由异质结构的非挥发性铁电压切换独特地启用了全电动控制的阀门。这些发现揭示了FECL $ _2 $/sc $ _2 $ co $ _2 $ vdw异质结构的潜力,作为设计下一代最终紧凑的信息处理,数据存储和SpinTronics设备的基础。

Multiferroic van der Waals (vdW) heterostrucutres offers an exciting route towards novel nanoelectronics and spintronics device technology. Here we investigate the electronic and transport properties of multiferroic vdW heterostructure composed of ferromagnetic FeCl$_2$ monolayer and ferroelectric Sc$_2$CO$_2$ monolayer using first-principles density functional theory and quantum transport simulations. We show that FeCl$_2$/Sc$_2$CO$_2$ heterostructure can be reversibly switched from semiconducting to half-metallic behavior by electrically modulating the ferroelectric polarization states of Sc$_2$CO$_2$. Intriguingly, the half-metallic phase exhibits a Type-III broken gap band alignment, which can be beneficial for tunnelling field-effect transistor application. We perform a quantum transport simulation, based on a \emph{proof-of-concept} two-terminal nanodevice, to demonstrate all-electric-controlled valving effects uniquely enabled by the nonvolatile ferroelectric switching of the heterostructure. These findings unravels the potential of FeCl$_2$/Sc$_2$CO$_2$ vdW heterostructures as a building block for designing a next generation of ultimately compact information processing, data storage and spintronics devices.

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