Ling Tao, Chen Sung-Liang, Guo L Jay
Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, Michigan 48109, USA.
Opt Express. 2011 Jan 17;19(2):861-9. doi: 10.1364/OE.19.000861.
Smooth sidewall silicon micro-ring molds have been fabricated using resist reflow and thermal oxidation method. High Q factor polymer micro-ring resonators have been fabricated using these molds. Quality factors as high as 10(5) have been measured at telecommunication wavelength range. By carefully examining the different loss mechanisms in polymer micro-ring, we find that the surface scattering loss can be as low as 0.23 dB/cm, much smaller than the absorption loss of the polystyrene polymer used in our devices. When used as an ultrasound detector such a high Q polymer micro-ring device can achieve an acoustic sensitivity around 36.3 mV/kPa with 240 μW operating power. A noise equivalent pressure (NEP) is around 88 Pa over a bandwidth range of 1-75 MHz. We have improved the NEP by a factor of 3 compared to our previous best result.
已采用光刻胶回流和热氧化方法制造出光滑侧壁硅微环模具。利用这些模具制造出了高品质因数的聚合物微环谐振器。在电信波长范围内测得的品质因数高达10⁵。通过仔细研究聚合物微环中的不同损耗机制,我们发现表面散射损耗可低至0.23 dB/cm,远小于我们器件中使用的聚苯乙烯聚合物的吸收损耗。当用作超声探测器时,这种高Q聚合物微环器件在240 μW的工作功率下可实现约36.3 mV/kPa的声灵敏度。在1 - 75 MHz的带宽范围内,噪声等效压力(NEP)约为88 Pa。与我们之前的最佳结果相比,我们已将NEP提高了3倍。