异质结
石墨烯
饱和吸收
材料科学
光电子学
调制(音乐)
光子学
吸收(声学)
纳米光子学
纳米尺度
纳米技术
载流子
物理
声学
波长
复合材料
光纤激光器
作者
Yiduo Wang,Yiduo Wang,Changyong Lan,Li Zhou,Jianlong Kang,Wanxin Zheng,Tao Xue,Yejun Li,Xiaoming Yuan,Si Xiao,Heping Li,Jun He
标识
DOI:10.1002/advs.202306096
摘要
Abstract Interlayer charge‐transfer (CT) in 2D atomically thin vertical stacks heterostructures offers an unparalleled new approach to regulation of device performance in optoelectronic and photonics applications. Despite the fact that the saturable absorption (SA) in 2D heterostructures involves highly efficient optical modulation in the space and time domain, the lack of explicit SA regulation mechanism at the nanoscale prevents this feature from realizing nanophotonic modulation. Here, the enhancement of SA response via CT in WS 2 /graphene vertical heterostructure is proposed and the related mechanism is demonstrated through simulations and experiments. Leveraging this mechanism, CT‐induced SA enhancement can be expanded to a wide range of nonlinear optical modulation applications for 2D materials. The results suggest that CT between 2D heterostructures enables efficient nonlinear optical response regulation.
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