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首页> 外文期刊>Science Advances >Moiré potential impedes interlayer exciton diffusion in van der Waals heterostructures
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Moiré potential impedes interlayer exciton diffusion in van der Waals heterostructures

机译:Moiré潜力阻碍了van der Waals异质结构的中间体激子扩散

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The properties of van der Waals heterostructures are drastically altered by a tunable moiré superlattice arising from periodically varying atomic alignment between the layers. Exciton diffusion represents an important channel of energy transport in transition metal dichalcogenides (TMDs). While early studies performed on TMD heterobilayers suggested that carriers and excitons exhibit long diffusion, a rich variety of scenarios can exist. In a moiré crystal with a large supercell and deep potential, interlayer excitons may be completely localized. As the moiré period reduces at a larger twist angle, excitons can tunnel between supercells and diffuse over a longer lifetime. The diffusion should be the longest in commensurate heterostructures where the moiré superlattice is completely absent. Here, we experimentally demonstrate the rich phenomena of interlayer exciton diffusion in WSesub2/sub/MoSesub2/sub heterostructures by comparing several samples prepared with chemical vapor deposition and mechanical stacking with accurately controlled twist angles.
机译:范德华异质结构的性质通过由层之间的周期性变化的原子对准而产生的可调莫尔超晶格大大改变。激子扩散代表过渡金属二甲基化物(TMDS)中的能量传输的重要通道。虽然对TMD异质层进行的早期研究表明,载体和激子呈现长扩散,因此可以存在丰富的方案。在具有大型超级细胞和深势的莫尔晶体中,层间激子可以完全局部化。随着Moiré时期以较大的扭转角减少,激子琴可以在超级细胞之间隧道隧道延长延长。扩散应该是相称异质结构中最长的,其中莫尔超晶格完全不存在。在这里,我们通过比较用化学气相沉积和机械堆叠具有精确控制的扭曲角度,通过比较使用用化学气相沉积和机械堆叠制备的几个样品来实验证明了在WSE 2 / mose 2 异质结构中的富含层间激子扩散的现象。 。

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