Shi Lan-Ting, Jin Feng, Zheng Mei-Ling, Dong Xian-Zi, Chen Wei-Qiang, Zhao Zhen-Sheng, Duan Xuan-Ming
Laboratory of Organic NanoPhotonics and Laboratory of Bio-Inspired Smart Interface Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, No. 29 Zhongguancun East Road, Beijing, 100190, P. R. China.
Phys Chem Chem Phys. 2016 Feb 21;18(7):5306-15. doi: 10.1039/c5cp06990d. Epub 2016 Jan 28.
We demonstrate low threshold lasing oscillation in a photonic crystal (PhC) laser by using tert-butyl Rhodamine B (t-Bu-RhB) doped gain media. Lactonic t-Bu-RhB is synthesized to improve doping concentration in polymethylmethacrylate (PMMA) films, and then isomerized to the zwitterion form to achieve highly fluorescent gain medium. The t-Bu-RhB doped PMMA film is sandwiched by a pair of polystyrene colloidal crystals to construct a PhC resonating cavity. Single-mode laser oscillation at 592 nm is observed when the PhC resonating cavity is pumped by a Nd:YAG laser. The lasing threshold is 0.12 MW cm(-2) utilizing 6.9 wt% t-Bu-RhB doped PMMA films, which is only 1/60 of that with 3 wt% t-Bu-RhB doped PMMA films. The concentration-dependent lasing action is attributed to different gain factors of the t-Bu-RhB doped PMMA films. Furthermore, a spatially and spectrally coherent laser beam from the PhC resonating cavity is verified by exploring the far-field image and angular dependence of the lasing emission. The approach provides a facile and efficient strategy to reduce the lasing threshold for fabricating low threshold PhC lasers.
我们通过使用掺杂叔丁基罗丹明B(t-Bu-RhB)的增益介质,在光子晶体(PhC)激光器中演示了低阈值激光振荡。合成内酯型t-Bu-RhB以提高其在聚甲基丙烯酸甲酯(PMMA)薄膜中的掺杂浓度,然后异构化为两性离子形式以获得高荧光增益介质。将掺杂t-Bu-RhB的PMMA薄膜夹在一对聚苯乙烯胶体晶体之间,构建一个PhC谐振腔。当用Nd:YAG激光器泵浦PhC谐振腔时,观察到在592 nm处的单模激光振荡。使用6.9 wt%掺杂t-Bu-RhB的PMMA薄膜时,激光阈值为0.12 MW cm(-2),这仅是3 wt%掺杂t-Bu-RhB的PMMA薄膜阈值的1/60。这种浓度依赖性激光作用归因于掺杂t-Bu-RhB的PMMA薄膜的不同增益因子。此外,通过探索激光发射的远场图像和角度依赖性,验证了来自PhC谐振腔的空间和光谱相干激光束。该方法为制造低阈值PhC激光器提供了一种简便有效的降低激光阈值的策略。