Guo Penglai, Li Xiaohui, Feng Tianci, Zhang Ying, Xu Wenxiong
School of Physics and Information Technology, Shaanxi Normal University, West Chang'an Avenue No. 620, Xi'an 710119, Shaanxi province, China.
Xi'an University of Post & Telecommunications, Xi'an 710121, China.
ACS Appl Mater Interfaces. 2020 Jul 15;12(28):31757-31763. doi: 10.1021/acsami.0c05325. Epub 2020 Jun 29.
Bismuthene, as a novel two-dimensional (2D) material, has attracted extensive attention because of its outstanding properties including narrow band gap, stability at room temperature, nonlinear optical transmission, and so on. In this paper, the physical characteristic, nonlinear optical response, and ultrafast photonics application of few-layer bismuthene are studied experimentally. By the balanced twin-detector measurement method, the saturable absorption property of few-layer bismuthene with a modulation depth of 2.5% and saturable intensity of 110 MW/cm at the optical communication band (C-band) is illustrated. Dependent on a few-layer bismuthene saturable absorber, an all-fiber ultrashort pulse laser is fabricated and the proposed fiber laser can operate with coexistence of harmonic mode-locking and dual-wavelength mode-locking. The different laser generations of harmonic and dual wavelength depend on the saturable absorption of few-layer bismuthene, the suitable birefringence and nonlinearity strength in the laser cavity. The results suggest that the ultrashort pulse laser obtained based on few-layer bismuthene could be applied to the field of pump-probe experiments and tunable terahertz radiation generation potentially.
铋烯作为一种新型二维材料,因其具有诸如窄带隙、室温稳定性、非线性光学传输等优异特性而备受广泛关注。本文通过实验研究了少层铋烯的物理特性、非线性光学响应及超快光子学应用。采用平衡双探测器测量方法,阐明了少层铋烯在光通信波段(C波段)具有调制深度为2.5%、饱和强度为110MW/cm²的饱和吸收特性。基于少层铋烯饱和吸收体,制备了全光纤超短脉冲激光器,该光纤激光器能够在谐波锁模和双波长锁模共存的情况下工作。谐波和双波长的不同激光产生取决于少层铋烯的饱和吸收、激光腔内合适的双折射和非线性强度。结果表明,基于少层铋烯获得的超短脉冲激光器有望应用于泵浦-探测实验和可调谐太赫兹辐射产生领域。