Wood Michael, Sun Peng, Reano Ronald M
Electroscience Laboratory, Department of Electrical and Computer Engineering, The Ohio State University, Columbus, OH 43212, USA.
Opt Express. 2012 Jan 2;20(1):164-72. doi: 10.1364/OE.20.000164.
We demonstrate coupling from tapered optical fibers to 450 nm by 250 nm silicon strip waveguides using compact cantilever couplers. The couplers consist of silicon inverse width tapers embedded within silicon dioxide cantilevers. Finite difference time domain simulations are used to design the length of the silicon inverse width taper to as short as 6.5 μm for a cantilever width of 2 μm. Modeling of various strip waveguide taper profiles shows reduced coupling losses for a quadratic taper profile. Infrared measurements of fabricated devices demonstrate average coupling losses of 0.62 dB per connection for the quasi-TE mode and 0.50 dB per connection for the quasi-TM mode across the optical telecommunications C band. In the wavelength range from 1477 nm to 1580 nm, coupling losses for both polarizations are less than 1 dB per connection. The compact, broadband, and low-loss coupling scheme enables direct access to photonic integrated circuits on an entire chip surface without the need for dicing or cleaving the chip.
我们展示了使用紧凑型悬臂耦合器将锥形光纤与450纳米×250纳米的硅条形波导进行耦合。这些耦合器由嵌入二氧化硅悬臂中的硅反宽度锥形结构组成。采用时域有限差分模拟方法,将悬臂宽度为2微米时硅反宽度锥形结构的长度设计得短至6.5微米。对各种条形波导锥形轮廓的建模表明,二次锥形轮廓的耦合损耗更低。对制造出的器件进行红外测量,结果表明在光通信C波段,准TE模式下每个连接的平均耦合损耗为0.62分贝,准TM模式下每个连接的平均耦合损耗为0.50分贝。在1477纳米至1580纳米的波长范围内,两种偏振的耦合损耗均小于每个连接1分贝。这种紧凑、宽带且低损耗的耦合方案能够直接在整个芯片表面接入光子集成电路,而无需对芯片进行切割或劈裂。