School of Physics and CRANN, Trinity College Dublin , Dublin 2, Ireland.
Key Laboratory of Materials for High-Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences , Shanghai 201800, China.
ACS Nano. 2016 Jul 26;10(7):6923-32. doi: 10.1021/acsnano.6b02770. Epub 2016 Jun 16.
The recent progress on black phosphorus makes it a promising candidate material for broadband nanophotonic devices, especially operating in the mid-infrared spectral region. Here, the excited carrier dynamics and nonlinear optical response of unoxidized black phosphorus nanosheets and their wavelength dependence were systematically studied from 800 nm to 2.1 μm. The wavelength-dependent relaxation times of black phosphorus nanosheets are determined to be 360 fs to 1.36 ps with photon energies from 1.55 to 0.61 eV. In a comparative study with graphene, we found that black phosphorus has a faster carrier relaxation in near- and mid-infrared region. With regard to nonlinear optical absorption, the response of black phosphorus significantly increases from near- to mid-infrared, and black phosphorus is also confirmed to be better as saturable absorber to MoS2 in infrared region.
黑磷的最新进展使其成为宽带纳米光子器件的有前途的候选材料,特别是在中红外光谱区域内工作。在这里,从 800nm 到 2.1μm,系统地研究了未氧化的黑磷纳米片的激发载流子动力学和非线性光学响应及其波长依赖性。用从 1.55eV 到 0.61eV 的光子能量确定黑磷纳米片的波长相关弛豫时间为 360fs 到 1.36ps。与石墨烯进行比较研究后,我们发现黑磷在近红外和中红外区域内具有更快的载流子弛豫。关于非线性光吸收,黑磷的响应从近红外显著增加到中红外,并且还证实黑磷在红外区域作为 MoS2 的饱和吸收体更好。