Cao Yue, Zhang Daming, Yang Yue, Lin Baizhu, Lv Jiawen, Wang Fei, Yang Xianwang, Yi Yunji
State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, China.
Polymers (Basel). 2020 Aug 29;12(9):1960. doi: 10.3390/polym12091960.
This article demonstrated the Au nanoparticles-doped polymer all-optical switches based on photothermal effects. The Au nanoparticles have a strong photothermal effect, which would generate the inhomogeneous thermal field distributions in the waveguide under the laser irradiation. Meanwhile, the polymer materials have the characteristics of good compatibility with photothermal materials, low cost, high thermo-optical coefficient and flexibility. Therefore, the Au nanoparticles-doped polymer material can be applied in optically controlled optical switches with low power consumption, small device dimension and high integration. Moreover, the end-pumping method has a higher optical excitation efficiency, which can further reduce the power consumption of the device. Two kinds of all-optical switching devices have been designed including a base mode switch and a first-order mode switch. For the base mode switch, the power consumption and the rise/fall time were 2.05 mW and 17.3/106.9 μs, respectively at the wavelength of 650 nm. For the first-order mode switch, the power consumption and the rise/fall time were 0.5 mW and 10.2/74.9 μs, respectively at the wavelength of 532 nm. This all-optical switching device has the potential applications in all-optical networks, flexibility device and wearable technology fields.
本文展示了基于光热效应的金纳米颗粒掺杂聚合物全光开关。金纳米颗粒具有很强的光热效应,在激光照射下会在波导中产生不均匀的热场分布。同时,聚合物材料具有与光热材料相容性好、成本低、热光系数高和柔韧性好的特点。因此,金纳米颗粒掺杂聚合物材料可应用于低功耗、小器件尺寸和高集成度的光控光开关。此外,端面泵浦方法具有更高的光激发效率,可进一步降低器件的功耗。设计了两种全光开关器件,包括基模开关和一阶模开关。对于基模开关,在650nm波长下,功耗和上升/下降时间分别为2.05mW和17.3/106.9μs。对于一阶模开关,在532nm波长下,功耗和上升/下降时间分别为0.5mW和10.2/74.9μs。这种全光开关器件在全光网络、柔性器件和可穿戴技术领域具有潜在应用。