Acta Photonica Sinica, Volume. 53, Issue 5, 0553114(2024)
Flow Rate Sensing Based on Whispering Gallery Mode Microbubble Cavity
[1] SUN Heng, HU Ning, WANG Jianhua. Application of microfluidic technology in antibody screening[J]. Biotechnology Journal, 17, 2100623(2022).
[2] WANG Yuetong, CHEN Zhouyue, BIAN Feika et al. Advances of droplet-based microfluidics in drug discovery[J]. Expert Opinion on Drug Discovery, 15, 969-979(2020).
[3] SANTISTEBAN T S, RABAJANIA O, KALININA I et al. Rapid spheroid clearing on a microfluidic chip[J]. Lab on a Chip, 18, 153-161(2018).
[4] FREY O, MISUN P M, FLURI D A et al. Reconfigurable microfluidic hanging drop network for multi-tissue interaction and analysis[J]. Nature Communications, 5, 4250(2014).
[5] HASSAN U, WATKINS N N, EDWARDS C et al. Flow metering characterization within an electrical cell counting microfluidic device[J]. Lab on a Chip, 14, 1469-1476(2014).
[6] BOURGUIGNON N, KARP P, ATTALLAH C et al. Large area microfluidic bioreactor for production of recombinant protein[J]. Biosensors, 12, 526(2022).
[7] GONG Yuan, LIU Qunfeng, ZHANG chenlin et al. Microfluidic flow rate detection with a large dynamic range by optical manipulation[J]. IEEE Photonics Technology Letters, 27, 2508-2511(2015).
[8] GLANINGER A, JACHIMOWICZ A, KOHL F et al. Wide range semiconductor flow sensors[J]. Sensors and Actuators A: Physical, 85, 139-146(2000).
[9] CHEN Jack, FAN Zhifang, ZOU Jun et al. Two-dimensional micromachined flow sensor array for fluid mechanics studies[J]. Journal of Aerospace Engineering, 16, 85-97(2003).
[10] COLLINS J, LEE A P. Microfluidic flow transducer based on the measurement of electrical admittance[J]. Lab on a Chip, 4, 7-10(2004).
[11] KRIJNEN G J M, DIJKSTRA M, VAN BAAR J J et al. MEMS based hair flow-sensors as model systems for acoustic perception studies[J]. Nanotechnology, 17, S84(2006).
[12] GAO Ran, LU Danfeng, CHENG Jin et al. Simultaneous measurement of refractive index and flow rate using graphene-coated optofluidic anti-resonant reflecting guidance[J]. Optics Express, 25, 28731-28742(2017).
[13] LIU Da, GAO Ran, LI Zhipei et al. Simultaneous measurement of refractive index and flow rate using a Co2+-doped microfiber[J]. Applied Sciences, 11, 10525(2021).
[14] SADEGHI J, GHASEMI A H B, LATIFI H. A label-free infrared opto-fluidic method for real-time determination of flow rate and concentration with temperature cross-sensitivity compensation[J]. Lab on a Chip, 16, 3957-3968(2016).
[15] JIANG Xuefeng, QAVI A J, HUANG S H et al. Whispering-gallery sensors[J]. Matter, 3, 371-392(2020).
[16] ZHI Yanyan, YU Xiaochong, GONG Qihuang et al. Single nanoparticle detection using optical microcavities[J]. Advanced Materials, 29, 1604920(2017).
[17] TOROPOV N, CABELLO G, SERRANO M P et al. Review of biosensing with whispering-gallery mode lasers[J]. Light: Science & Applications, 10, 42(2021).
[18] SU J, GOLDBERG A F G, STOLTZ B M. Label-free detection of single nanoparticles and biological molecules using microtoroid optical resonators[J]. Light: Science & Applications, 5, e16001(2016).
[19] TU Xin, WANG Yuxiang, GUO Zhihe et al. Underwater acoustic wave detection based on packaged optical microbubble resonator[J]. Journal of Lightwave Technology, 40, 6272-6279(2022).
[20] PAN Jinshun, ZHANG Bin, LIU Zhengyong et al. Microbubble resonators combined with a digital optical frequency comb for high-precision air-coupled ultrasound detectors[J]. Photonics Research, 8, 303-310(2020).
[21] YANG Yong, SAURABH S, WARD J M et al. High-Q, ultrathin-walled microbubble resonator for aerostatic pressure sensing[J]. Optics Express, 24, 294-299(2016).
[22] DUAN Bing, ZOU Hanying, CHEN Jinhui et al. High-precision whispering gallery microsensors with ergodic spectra empowered by machine learning[J]. Photonics Research, 10, 2343-2348(2022).
[23] LI Hanyang, SUN Bo, YUAN Yonggui et al. Guanidine derivative polymer coated microbubble resonator for high sensitivity detection of CO2 gas concentration[J]. Optics Express, 27, 1991-2000(2019).
[24] PENG Zhongdi, YU Changqiu, REN Hongliang et al. Gas identification in high-Q microbubble resonators[J]. Optics Letters, 45, 4440-4443(2020).
[25] YANG Daquan, CHEN Jinhui, CAO Qitao et al. Operando monitoring transition dynamics of responsive polymer using optofluidic microcavities[J]. Light: Science & Applications, 10, 128(2021).
[26] YANG Daquan, DUAN Bing, WANG Aiqiang et al. Packaged microbubble resonator for versatile optical sensing[J]. Journal of Lightwave Technology, 38, 4555-4559(2020).
[27] LI Zihao, ZHU Chenggang, GUO Zhihe et al. Highly sensitive label-free detection of small molecules with an optofluidic microbubble resonator[J]. Micromachines, 9, 274(2018).
[28] GUO Zhihe, LU Qijing, ZHU Chenggang et al. Ultra-sensitive biomolecular detection by external referencing optofluidic microbubble resonators[J]. Optics Express, 27, 12424-12435(2019).
[29] ZHAO Xuyang, GUO Zhihe, ZHOU Yi et al. Optical whispering-gallery-mode microbubble sensors[J]. Micromachines, 13, 592(2022).
[30] WARD J M, YANG Yong, CHORMAIC SNIC. Glass-on-glass fabrication of bottle-shaped tunable microlasers and their applications[J]. Scientific Reports, 6, 1-10(2016).
[31] GONG Yuan, ZHANG Minglei, GONG Chaoyang et al. Sensitive optofluidic flow rate sensor based on laser heating and microring resonator[J]. Microfluidics and Nanofluidics, 19, 1497-1505(2015).
[32] CHEN Zhenmin, GUO Zhihe, MU Xin et al. Packaged microbubble resonator optofluidic flow rate sensor based on Bernoulli Effect[J]. Optics Express, 27, 36932-36940(2019).
[33] WANG Zijie, ZHANG Xiaobei, ZHAO Shuaichang et al. High-sensitivity flow rate sensor enabled by higher order modes of packaged microbottle resonator[J]. IEEE Photonics Technology Letters, 33, 599-602(2021).
[34] SALETA M E, TOBIA D, GIL S. Experimental study of Bernoulli's equation with losses[J]. American Journal of Physics, 73, 598-602(2005).
[35] ARMENGOL J, CALBÓ J, PUJOL T et al. Bernoulli correction to viscous losses: Radial flow between two parallel discs[J]. American Journal of Physics, 76, 730-737(2008).
[36] REA U, MCKRELL T, HU Linwen et al. Laminar convective heat transfer and viscous pressure loss of alumina–water and zirconia-water nanofluids[J]. International Journal of Heat and Mass Transfer, 52, 2042-2048(2009).
[37] BRODY J P, YAGER P, GOLDSTEIN R E et al. Biotechnology at low Reynolds numbers[J]. Biophysical Journal, 71, 3430-3441(1996).
[38] MEGYESY E F[M]. Pressure vessel handbook(1973).
[39] BARUCCI A, BERNESCHI S, GIANNETTI A et al. Optical microbubble resonators with high refractive index inner coating for bio-sensing applications: an analytical approach[J]. Sensors, 16, 1992(2016).
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Chunhui MA, Xiaochong YU, Bing DUAN, Yanran WU, Xingyun ZHAO, Songyi LIU, Yongpan GAO, Daquan YANG, Xuan ZHANG. Flow Rate Sensing Based on Whispering Gallery Mode Microbubble Cavity[J]. Acta Photonica Sinica, 2024, 53(5): 0553114
Category: Special Issue for Microcavity Photonics
Received: Mar. 11, 2024
Accepted: Apr. 16, 2024
Published Online: Jun. 20, 2024
The Author Email: Xuan ZHANG (zhangxuanbupt@bupt.edu.cn)