论文标题

通过与二维材料杂交调整纳米线激光器

Tuning nanowire lasers via hybridization with two-dimensional materials

论文作者

Eobaldt, Edwin, Vitale, Francesco, Zapf, Maximilian, Lapteva, Margarita, Hamzayev, Tarlan, Gan, Ziyang, Najafidehaghani, Emad, Neumann, Christof, George, Antony, Turchanin, Andrey, Soavi, Giancarlo, Ronning, Carsten

论文摘要

混合尺寸杂种结构最近成为新型电子和光电设备的有希望的构建块,引起了人们的关注。在这种情况下,半导体纳米线与二维材料的杂交可以提供新的方法来控制和调节纳米级的激光。在这项工作中,我们确定性地制造了由ZnO纳米线和MOS2单层组成的杂化混合二维异质结构,并控制了其相对位置。首先,我们表明我们的确定性制造方法不会降低ZnO纳米线的光学特性。其次,我们证明ZnO纳米线的激光波长可以通过与CVD生长的MOS2单层杂交来调节几种纳米。我们将激光模式的光谱偏移分配给杂音界面的有效载体转移,并随后在ZnO中(Moss-Burstein Effect)中的光条间隙增加。

Mixed dimensional hybrid structures have recently gained increasing attention as promising building blocks for novel electronic and optoelectronic devices. In this context, hybridization of semiconductor nanowires with two-dimensional materials could offer new ways to control and modulate lasing at the nanoscale. In this work, we deterministically fabricate hybrid mixed-dimensional heterostructures composed of ZnO nanowires and MoS2 monolayers with micrometer control over their relative position. First, we show that our deterministic fabrication method does not degrade the optical properties of the ZnO nanowires. Second, we demonstrate that the lasing wavelength of ZnO nanowires can be tuned by several nanometers by hybridization with CVD-grown MoS2 monolayers. We assign this spectral shift of the lasing modes to an efficient carrier transfer at the heterointerface and the subsequent increase of the optical band gap in ZnO (Moss-Burstein effect).

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源