4.7 Article

2D BP/InSe Heterostructures as a Nonlinear Optical Material for Ultrafast Photonics

期刊

NANOMATERIALS
卷 12, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/nano12111809

关键词

BP; InSe; heterostructure; LPE; nonlinear optical responses; ultrafast photonics application; mode-locked pulse; dark-bright soliton pairs

资金

  1. National Natural Science Foundation of China [61827819, 62105209]
  2. Research Fund of Guangdong-Hong Kong-Macao Joint Laboratory for Intelligent Micro-Nano Optoelectronic Technology [2020B1212030010]
  3. Research Fund of Guangdong Provincial Key Laboratory of Semiconductor Micro Display [2020B121202003]
  4. Foundation and applied foundation research fund of Guangdong province [2019A1515111060]
  5. Science and Technology Innovation Commission of Shenzhen [GJHZ20200731095809026]
  6. Natural Science Foundation of SZU [860-000002110435]
  7. Project of Department of Education of Guangdong Province [2021ZDJS105]

向作者/读者索取更多资源

In this research, a two-dimensional BP/InSe heterostructure was successfully fabricated and its optical properties were studied. By preparing an SA based on BP/InSe, stable soliton pulses and harmonic mode locking were achieved. The findings demonstrate the potential of 2D BP/InSe heterostructure in the applications of nano-photonics devices.
The BP/InSe heterojunction has attracted the attention of many fields in successful combined high hole mobility of black phosphorus (BP) and high electron mobility of indium selenide (InSe), and enhanced the environmental stability of BP. Nevertheless, photonics research on the BP/InSe heterostructure was insufficient, while both components are considered promising in the field. In this work, a two-dimensional (2D) BP/InSe heterostructure was fabricated using the liquid-phase exfoliation method. Its linear and non-linear optical (NLO) absorption was characterized by ultraviolet-visible-infrared and Open-aperture Z-scan technology. On account of the revealed superior NLO properties, an SA based on 2D BP/InSe was prepared and embedded into an erbium-doped fiber laser, traditional soliton pulses were observed at 1.5 mu m with the pulse duration of 881 fs. Furthermore, harmonic mode locking of bound solitons and dark-bright soliton pairs were also obtained in the same laser cavity due to the cross-coupling effect. The stable mode-locked operation can be maintained for several days, which overcome the low air stability of BP. This contribution further proves the excellent optical properties of 2D BP/InSe heterostructure and provides new probability of developing nano-photonics devices for the applications of double pulses laser source and long-distance information transmission.

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