School of Electronic and Information Engineering, Beihang University, Beijing, China.
Opt Lett. 2011 Sep 15;36(18):3539-41. doi: 10.1364/OL.36.003539.
Giant Goos-Hänchen (GH) shifts are experimentally demonstrated from a prism-coupled multilayer structure incorporating a one-dimensional photonic crystal (PC) through a bandgap-enhanced total internal reflection scheme. By combining the large phase changes near the bandgap of the PC and the low reflection loss of the total internal reflection, 2 orders of magnitude enhancement of the GH shift is realized with rather low extra optical loss, which might help to open the door toward many interesting applications for GH effects.
实验证明,通过带隙增强全内反射方案,从包含一维光子晶体 (PC) 的棱镜耦合多层结构中可以实现巨大古斯-汉欣 (GH) 频移。通过结合 PC 带隙附近的大相位变化和全内反射的低反射损耗,可以实现 GH 频移的 2 个数量级的增强,而额外的光学损耗相当低,这可能有助于为 GH 效应的许多有趣应用打开大门。