Su Dan, Zhai Tianrui, Ge Kun, Zhang Shuai, Xu Zhiyang, Tong Junhua, Li Hongzhao, Sun Shiju, Zhang Ying, Wang Xiaolei
College of Mechanical and Electronic Engineering, Beijing Polytechnic, Beijing 100176, China.
Faculty of Science, Beijing University of Technology, Beijing 100124, China.
Nanoscale. 2021 Nov 11;13(43):18349-18355. doi: 10.1039/d1nr03938e.
Because of its limited light field mode and high Q value, the whispering-gallery-mode (WGM) cavity has been widely studied. In this study, we propose a simple, rapid, low-cost and no-manufacturing technology method that we call the drip-coating method to obtain an irregular cavity with arbitrary boundaries. By using polyvinyl alcohol (PVA) solution doped with rhodamine 6G, the irregular cavity with arbitrary boundaries was drip-coated on a high-reflection mirror, forming a WGM laser. The sample was pumped with a 532 nm pulsed laser, and the single-mode WGM and multi-WGM lasing were obtained. All WGMs are the vertical oscillation modes, which originate from both the total internal reflection of the PVA/air interface and vertical reflection of the PVA/mirror interface. The other boundaries of the cavity were not involved in the reflection and could have any shape. The mechanism of producing single-mode lasing is due to the action of the loss-gain cavity. Multi-WGM lasing is attributed to at least two groups of different WGMs existing in an irregular cavity. This can be confirmed by using a microsphere model and intensity correlation method. These results may provide an alternative for the design of WGM lasers.
由于其有限的光场模式和高Q值,回音壁模式(WGM)腔已得到广泛研究。在本研究中,我们提出了一种简单、快速、低成本且无需制造工艺的方法,即滴涂法,以获得具有任意边界的不规则腔。通过使用掺杂若丹明6G的聚乙烯醇(PVA)溶液,将具有任意边界的不规则腔滴涂在高反射镜上,形成一个WGM激光器。用532 nm脉冲激光泵浦该样品,获得了单模WGM和多WGM激光。所有的WGM都是垂直振荡模式,它们源于PVA/空气界面的全内反射和PVA/镜子界面的垂直反射。腔的其他边界不参与反射,可以具有任何形状。产生单模激光的机制是由于损耗-增益腔的作用。多WGM激光归因于不规则腔内至少存在两组不同的WGM。这可以通过使用微球模型和强度相关方法来证实。这些结果可能为WGM激光器的设计提供一种替代方案。