论文标题

山谷量环中的光电型杂材杂材

Valley caloritronics in a photodriven hetero-junction of Dirac materials

论文作者

Kapri, Priyadarshini, Dey, Bashab, Ghosh, Tarun Kanti

论文摘要

我们考虑了一个侧向异质结构,其中左右导线由单层石墨烯制成,中间区域由倾斜倾斜的迪拉克材料(硼苯或喹啉或奎因类石墨烯)制成,并用非谐振的圆形极化辐射照明。与没有倾斜的狄拉克材料相比,倾斜参数$ v_t $使乐队间隙间接和尺寸较小。暴露于辐射使中央区域山谷依赖性的带隙显示为山谷极化电荷和热流电流,从而导致山谷的Seebeck效应。我们研究了山谷极化电导,导热电导,热电器和功绩的变化,该连接与化学电位$μ$和可调间隙参数$η$的变化。对于非零$η$,所有山谷极化量在某些化学势值下均达到峰值,然后渐近地消失。增加间隙参数可以增强山谷热电图和山谷的功绩图,而山谷电导率(电气和热量)显示出$η$的非单调行为。我们还将山谷两极分化的数量与相应的电荷对应物进行比较(两个山谷的有效贡献)。电荷热电图和功绩的电荷以$η$的单调性能,电荷电导电导率(电气和热力)用$η$描绘了趋势的减少趋势。此外,倾斜参数可降低载体通过交界处的有效传输,从而减少所有电荷和山谷极化数量。由于可以通过改变光线的强度和semenoff质量来调整色散中的间隙,因此该连接在其热电特性方面的可调性可以在实验上可实现。

We consider a lateral hetero-junction where the left and right leads are made of monolayer graphene and the middle region is made of a gapped tilted Dirac material (borophene or quinoid graphene) illuminated with off-resonant circularly polarized radiation. The tilt parameter $v_t$ makes the band gap indirect and smaller in magnitude as compared to Dirac materials without tilt. Exposure to radiation makes the band gaps of the central region valley-dependent which show their signatures as valley polarized charge and thermal currents, thereby causing a valley Seebeck effect. We study the variation of the valley polarized electrical conductance, thermal conductance, thermopower and figure of merit of this junction with chemical potential $μ$ and a tunable gap parameter $η$. For non-zero $η$, all the valley polarized quantities are peaked at certain values of chemical potential and then vanish asymptotically. Increase in gap parameter enhances the valley thermopower and valley figure of merit, whereas the valley conductances (electrical and thermal) show non monotonic behavior with $η$. We also compare the valley polarized quantities with their corresponding charge counterparts (effective contribution from both the valleys). The charge thermopower and the charge figure of merit behave non monotonically with $η$ and the charge conductances (electrical and thermal) depict a decreasing trend with $η$. Furthermore, the tilt parameter reduces the effective transmission of carriers through the junction, thereby diminishing all the charge and valley polarized quantities. As the gaps in the dispersion can be adjusted by varying the intensity of light as well as the Semenoff mass, the tunability of this junction with regard to its thermoelectric properties may be experimentally realizable.

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