Omega Optics, Inc., Austin, Texas 78758, USA.
Opt Lett. 2011 Mar 15;36(6):882-4. doi: 10.1364/OL.36.000882.
We design and fabricate a 320 nm slot for an electro-optic (E-O) polymer infiltrated silicon photonic crystal waveguide. Because of the large slot width, the poling efficiency of the infiltrated E-O polymer (AJCKL1/amorphous polycarbonate) is significantly improved. When coupled with the slow light effect from the silicon photonic crystal waveguide, an effective in-device r(33) of 735 pm/V, which to our knowledge is a record high, is demonstrated, which is ten times higher than the E-O coefficient achieved in thin film material. Because of this ultrahigh E-O efficiency, the V(π)L of the device is only 0.44 V mm, which is to our knowledge the best result of all E-O polymer modulators.
我们设计并制作了一个用于电光(E-O)聚合物渗透硅光子晶体波导的 320nm 槽。由于槽宽较大,渗透的 E-O 聚合物(AJCKL1/无定形聚碳酸酯)的极化效率得到了显著提高。当与硅光子晶体波导的慢光效应结合时,我们展示了一个高达 735 pm/V 的有效器件 r(33),这是我们所知的最高记录,比薄膜材料中实现的 E-O 系数高十倍。由于这种超高的 E-O 效率,器件的 V(π)L 仅为 0.44Vmm,这是我们所知的所有 E-O 聚合物调制器的最佳结果。