Air-coupled ultrasound detection using capillary-based optical ring resonators
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Chao Tian | Cheng Zhang | Xudong Fan | Xueding Wang | L Jay Guo | Xueding Wang | L. Guo | Xudong Fan | Chao Tian | W. Luo | Wei Luo | Kyu Hyun Kim | Cheng Zhang
[1] Wolfgang Drexler,et al. All-optical highly sensitive akinetic sensor for ultrasound detection and photoacoustic imaging. , 2016, Biomedical optics express.
[2] Chao Tian,et al. Non-Contact Photoacoustic Imaging Using a Commercial Heterodyne Interferometer , 2016, IEEE Sensors Journal.
[3] Yun Pan,et al. A Multi-Mode Dead Reckoning System for Pedestrian Tracking Using Smartphones , 2016, IEEE Sensors Journal.
[4] Hope T. Beier,et al. All-optical optoacoustic microscopy based on probe beam deflection technique , 2016, Photoacoustics.
[5] Lei Xu,et al. Packaged optofluidic microbubble resonators for optical sensing. , 2016, Applied optics.
[6] Cheng Zhang,et al. Imprinted Polymer Microrings as High-Performance Ultrasound Detectors in Photoacoustic Imaging , 2015, Journal of Lightwave Technology.
[7] B. Snyder,et al. A sensitive optical micro-machined ultrasound sensor (OMUS) based on a silicon photonic ring resonator on an acoustical membrane , 2015, Scientific Reports.
[8] Genny A. Pang,et al. Non-contact optoacoustic imaging with focused air-coupled transducers , 2015 .
[9] Síle Nic Chormaic,et al. Improved sensitivity for pressure sensing in microbubble resonators , 2015 .
[10] Zhilie Tang,et al. Rapid and noncontact photoacoustic tomography imaging system using an interferometer with high-speed phase modulation technique. , 2015, The Review of scientific instruments.
[11] Cheng Zhang,et al. Review of Imprinted Polymer Microrings as Ultrasound Detectors: Design, Fabrication, and Characterization , 2015, IEEE Sensors Journal.
[12] Kevin C. Boyle,et al. Non-contact thermoacoustic detection of embedded targets using airborne-capacitive micromachined ultrasonic transducers , 2015 .
[13] Hao Li,et al. Isometric multimodal photoacoustic microscopy based on optically transparent micro-ring ultrasonic detection. , 2015, Optica.
[14] Jonathan Ward,et al. Coupled-mode-induced transparency in aerostatically tuned microbubble whispering-gallery resonators. , 2015, Optics letters.
[15] Andrea M Armani,et al. Photoelastic ultrasound detection using ultra-high-Q silica optical resonators. , 2014, Optics express.
[16] Tao Ling,et al. Ultrabroad Bandwidth and Highly Sensitive Optical Ultrasonic Detector for Photoacoustic Imaging , 2014 .
[17] Tal Carmon,et al. Opto-acoustic sensing of fluids and bioparticles with optomechanofluidic resonators , 2014, The European Physical Journal Special Topics.
[18] S. Nic Chormaic,et al. Hollow core, whispering gallery resonator sensors , 2014, 1408.4338.
[19] Tal Carmon,et al. Fabrication and testing of microfluidic optomechanical oscillators. , 2014, Journal of visualized experiments : JoVE.
[20] Hao Li,et al. A transparent broadband ultrasonic detector based on an optical micro-ring resonator for photoacoustic microscopy , 2014, Scientific Reports.
[21] Lan Yang,et al. Ultrasound sensing using a fiber coupled silica microtoroid resonator encapsulated in a polymer , 2013, 2013 IEEE Photonics Conference.
[22] Jing Liu,et al. Brillouin cavity optomechanics with microfluidic devices , 2013, Nature Communications.
[23] Tal Carmon,et al. Cavity optomechanics on a microfluidic resonator with water and viscous liquids , 2012, Light: Science & Applications.
[24] Jean-Pierre Monchalin,et al. Non-contact photoacoustic tomography and ultrasonography for tissue imaging , 2011, Biomedical optics express.
[25] Oliver Benson,et al. Tuning whispering gallery modes using internal aerostatic pressure. , 2011, Optics letters.
[26] Tao Ling,et al. High-sensitivity and wide-directivity ultrasound detection using high Q polymer microring resonators. , 2011, Applied physics letters.
[27] Tao Ling,et al. Fabrication and characterization of High Q polymer micro-ring resonator and its application as a sensitive ultrasonic detector , 2011, Optics express.
[28] H. Feng,et al. Ultrasound: Food Processing , 2010 .
[29] G. D. den Heeten,et al. Feasibility of noncontact piezoelectric detection of photoacoustic signals in tissue-mimicking phantoms. , 2010, Journal of biomedical optics.
[30] Yan-qing Lu,et al. Fiber-Optic Pressure Sensor Based on Tunable Liquid Crystal Technology , 2010, IEEE Photonics Journal.
[31] Tal Carmon,et al. Photonic micro-electromechanical systems vibrating at X-band (11-GHz) rates. , 2009, Physical review letters.
[32] Sheng-Wen Huang,et al. Polymer Microring Resonators for High-Frequency Ultrasound Detection and Imaging , 2008, IEEE Journal of Selected Topics in Quantum Electronics.
[33] Scott Lacey,et al. Versatile opto-fluidic ring resonator lasers with ultra-low threshold. , 2007, Optics express.
[34] Tindaro Ioppolo,et al. Pressure tuning of whispering gallery mode resonators , 2007 .
[35] M. O’Donnell,et al. Broadband all-optical ultrasound transducers , 2007 .
[36] Sheng-Wen Huang,et al. High-frequency ultrasound sensors using polymer microring resonators , 2007, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[37] Paul Beard,et al. Broadband ultrasound field mapping system using a wavelength tuned, optically scanned focused laser beam to address a Fabry Perot polymer film sensor , 2006, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[38] Andrea M Armani,et al. Heavy water detection using ultra-high-Q microcavities. , 2006, Optics letters.
[39] Lihong V. Wang,et al. Photoacoustic imaging in biomedicine , 2006 .
[40] D. Gill,et al. Optical sensing of biomolecules using microring resonators , 2006, IEEE Journal of Selected Topics in Quantum Electronics.
[41] Tal Carmon,et al. Temporal behavior of radiation-pressure-induced vibrations of an optical microcavity phonon mode. , 2005, Physical review letters.
[42] Matthew O'Donnell,et al. Ultrasound detection using polymer microring optical resonator , 2004 .
[43] David M. Fried,et al. The Design, Fabrication and Characterization of Independent-Gate FinFETs , 2004 .
[44] R. E. Green,et al. Non-contact ultrasonic techniques. , 2004, Ultrasonics.
[45] Lihong V. Wang,et al. Noninvasive laser-induced photoacoustic tomography for structural and functional in vivo imaging of the brain , 2003, Nature Biotechnology.
[46] S.T. Hansen,et al. Air-coupled nondestructive evaluation using micromachined ultrasonic transducers , 1999, 1999 IEEE Ultrasonics Symposium. Proceedings. International Symposium (Cat. No.99CH37027).
[47] P C Beard,et al. Optical fiber photoacoustic-photothermal probe. , 1998, Optics letters.
[48] K. Yoshihisa. Calculation of the Absorption of Sound by the Atmosphere , 1997 .
[49] G. Beheim,et al. Integrated optical ring resonator with micromechanical diaphragms for pressure sensing , 1994, IEEE Photonics Technology Letters.
[50] Nils Kroemer,et al. Ultrasonic transducers and transducer arrays for applications in air , 1992 .
[51] Sun,et al. Photoacoustic monopole radiation in one, two, and three dimensions. , 1991, Physical review letters.
[52] Graham F. McDearmon,et al. Fiber-Optic Hydrophone , 1990, Other Conferences.
[53] P Pignoli,et al. Intimal plus medial thickness of the arterial wall: a direct measurement with ultrasound imaging. , 1986, Circulation.
[54] F. A. Silber,et al. ULTRASONIC TESTING OF MATERIALS , 1978 .
[55] F L Thurstone,et al. Cardiac Imaging Using a Phased Array Ultrasound System: II. Clinical Technique and Application , 1976, Circulation.
[56] William Primak,et al. Photoelastic Constants of Vitreous Silica and Its Elastic Coefficient of Refractive Index , 1959 .
[57] Da-Kang Yao,et al. Photoacoustic measurement of the Grüneisen parameter of tissue , 2014, Journal of biomedical optics.
[58] V. Minialga,et al. Application of ultrasonic method for investigation of porous plates , 2008 .
[59] A. Demčenko,et al. Ultrasound attenuation dependence on air temperature in closed chambers , 2008 .
[60] M. O'Donnell,et al. High frequency optoacoustic arrays using etalon detection , 2000, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[61] B. Khuri-Yakub,et al. Surface micromachined capacitive ultrasonic transducers , 1998, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[62] D. Schindel,et al. The design and characterization of micromachined air-coupled capacitance transducers , 1995, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[63] G. S. Taylor,et al. Laser-generated ultrasound: its properties, mechanisms and multifarious applications , 1993 .