Lv Changjian, Meng Fanchao, Cui Linghao, Jiao Yadong, Jia Zhixu, Qin Weiping, Qin Guanshi
State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun, 130012, China.
Nat Commun. 2024 Jul 29;15(1):6372. doi: 10.1038/s41467-024-50665-7.
Dynamic control of the optical properties of gold nanostructures is crucial for advancing photonics technologies spanning optical signal processing, on-chip light sources and optical computing. Despite recent advances in tunable plasmons in gold nanostructures, most studies are limited to the linear or static regime, leaving the dynamic manipulation of nonlinear optical properties unexplored. This study demonstrates the voltage-controlled Kerr nonlinear optical response of gold nanofilms via the electrothermal effect. By applying relatively low voltages (~10 V), the nonlinear absorption coefficient and refractive index are reduced by 40.4% and 33.1%, respectively, due to the increased damping coefficient of gold nanofilm. Furthermore, a voltage-controlled all-fiber gold nanofilm saturable absorber is fabricated and used in mode-locked fiber lasers, enabling reversible wavelength-tuning and operation regimes switching (e.g., mode-locking-Q-switched mode-locking). These findings advance the understanding of electrically controlled nonlinear optical responses in gold nanofilms and offer a flexible approach for controlling fiber laser operations.
动态控制金纳米结构的光学特性对于推动涵盖光信号处理、片上光源和光学计算的光子技术至关重要。尽管最近在金纳米结构的可调谐等离子体方面取得了进展,但大多数研究仅限于线性或静态状态,而非线性光学特性的动态操纵仍未得到探索。本研究通过电热效应展示了金纳米薄膜的电压控制克尔非线性光学响应。通过施加相对较低的电压(约10 V),由于金纳米薄膜的阻尼系数增加,非线性吸收系数和折射率分别降低了40.4%和33.1%。此外,还制备了一种电压控制的全光纤金纳米薄膜可饱和吸收体,并将其用于锁模光纤激光器中,实现了可逆的波长调谐和工作模式切换(例如,锁模-调Q-锁模)。这些发现增进了对金纳米薄膜中电控非线性光学响应的理解,并为控制光纤激光器的运行提供了一种灵活的方法。