Namnabat Soha, Kim Kyung-Jo, Jones Adam, Himmelhuber Roland, DeRose Christopher T, Trotter Douglas C, Starbuck Andrew L, Pomerene Andrew, Lentine Anthony L, Norwood Robert A
Opt Express. 2017 Sep 4;25(18):21471-21482. doi: 10.1364/OE.25.021471.
Silicon photonics has gained interest for its potential to provide higher efficiency, bandwidth and reduced power consumption compared to electrical interconnects in datacenters and high performance computing environments. However, it is well known that silicon photonic devices suffer from temperature fluctuations due to silicon's high thermo-optic coefficient and therefore, temperature control in many applications is required. Here we present an athermal optical add-drop multiplexer fabricated from ring resonators. We used a sol-gel inorganic-organic hybrid material as an alternative to previously used materials such as polymers and titanium dioxide. In this work we studied the thermal curing parameters of the sol-gel and their effect on thermal wavelength shift of the rings. With this method, we were able to demonstrate a thermal shift down to -6.8 pm/°C for transverse electric (TE) polarization in ring resonators with waveguide widths of 325 nm when the sol-gel was cured at 130°C for 10.5 hours. We also achieved thermal shifts below 1 pm/°C for transverse magnetic (TM) polarization in the C band under different curing conditions. Curing time compared to curing temperature shows to be the most important factor to control sol-gel's thermo-optic value in order to obtain an athermal device in a wide temperature range.
与数据中心和高性能计算环境中的电气互连相比,硅光子学因其具有提供更高效率、带宽和降低功耗的潜力而受到关注。然而,众所周知,由于硅的高热光系数,硅光子器件会受到温度波动的影响,因此在许多应用中都需要进行温度控制。在此,我们展示了一种由环形谐振器制成的无热光分插复用器。我们使用了一种溶胶-凝胶无机-有机杂化材料,以替代先前使用的聚合物和二氧化钛等材料。在这项工作中,我们研究了溶胶-凝胶的热固化参数及其对环形谐振器热波长偏移的影响。通过这种方法,当溶胶-凝胶在130°C下固化10.5小时时,我们能够证明对于波导宽度为325 nm的环形谐振器中的横向电(TE)偏振,热偏移低至-6.8 pm/°C。在不同的固化条件下,我们还在C波段实现了横向磁(TM)偏振低于1 pm/°C的热偏移。与固化温度相比,固化时间是控制溶胶-凝胶热光值以在宽温度范围内获得无热器件的最重要因素。