| Literature DB >> 34151464 |
Haoran Mu1,2, Yani Liu3,4, Sudhakara Reddy Bongu5, Xiaozhi Bao6, Lei Li7, Si Xiao8, Jincheng Zhuang4, Chen Liu9, Yamin Huang10, Yemin Dong10, Kristian Helmerson2, Jiaou Wang9, Guanyu Liu11, Yi Du3,4, Qiaoliang Bao1.
Abstract
Bulk germanium as a group-IV photonic material has been widely studied due to its relatively large refractive index and broadband and low propagation loss from near-infrared to mid-infrared. Inspired by the research of graphene, the 2D counterpart of bulk germanium, germanene, has been discovered and the characteristics of Dirac electrons have been observed. However, the optical properties of germanene still remain elusive. In this work, several layers of germanene are prepared with Dirac electronic characteristics and its morphology, band structure, carrier dynamics, and nonlinear optical properties are systematically investigated. It is surprisingly found that germanene has a fast carrier-relaxation time comparable to that of graphene and a relatively large nonlinear absorption coefficient, which is an order of magnitude higher than that of graphene in the near-infrared wavelength range. Based on these findings, germanene is applied as a new saturable absorber to construct an ultrafast mode-locked laser, and sub-picosecond pulse generation in the telecommunication band is realized. The results suggest that germanene can be used as a new type of group-IV material for various nonlinear optics and photonic applications.Entities:
Keywords: germanium nanosheets; mode-locking; nonlinear optics; ultrafast carrier dynamics
Year: 2021 PMID: 34151464 DOI: 10.1002/adma.202101042
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849