光子学
材料科学
光电子学
波克尔效应
硅光子学
电子线路
光子集成电路
调制(音乐)
信号处理
绝缘体上的硅
氮化硅
光开关
电子工程
硅
光学
电气工程
数字信号处理
物理
激光器
工程类
声学
作者
Chi Xiong,Wolfram H. P. Pernice,Hong X. Tang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2012-06-04
卷期号:12 (7): 3562-3568
被引量:258
摘要
Photonic miniaturization requires seamless integration of linear and nonlinear optical components to achieve passive and active functions simultaneously. Among the available material systems, silicon photonics holds immense promise for optical signal processing and on-chip optical networks. However, silicon is limited to wavelengths above 1.1 μm and does not provide the desired lowest order optical nonlinearity for active signal processing. Here we report the integration of aluminum nitride (AlN) films on silicon substrates to bring active functionalities to chip-scale photonics. Using CMOS-compatible sputtered thin films we fabricate AlN-on-insulator waveguides that exhibit low propagation loss (0.6 dB/cm). Exploiting AlN's inherent Pockels effect we demonstrate electro-optic modulation up to 4.5 Gb/s with very low energy consumption (down to 10 fJ/bit). The ultrawide transparency window of AlN devices also enables high speed modulation at visible wavelengths. Our low cost, wideband, carrier-free photonic circuits hold promise for ultralow power and high-speed signal processing at the microprocessor chip level.
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