Ultrasensitive plano-concave optical microresonators for ultrasound sensing

被引:2
作者
James A. Guggenheim
Jing Li
Thomas J. Allen
Richard J. Colchester
Sacha Noimark
Olumide Ogunlade
Ivan P. Parkin
Ioannis Papakonstantinou
Adrien E. Desjardins
Edward Z. Zhang
Paul C. Beard
机构
[1] University College London,Department of Medical Physics and Biomedical Engineering
[2] University College London,Department of Chemistry
[3] University College London,Department of Electronic and Electrical Engineering
来源
Nature Photonics | 2017年 / 11卷
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摘要
Highly sensitive broadband ultrasound detectors are needed to expand the capabilities of biomedical ultrasound, photoacoustic imaging and industrial ultrasonic non-destructive testing techniques. Here, a generic optical ultrasound sensing concept based on a novel plano-concave polymer microresonator is described. This achieves strong optical confinement (Q-factors > 105) resulting in very high sensitivity with excellent broadband acoustic frequency response and wide directivity. The concept is highly scalable in terms of bandwidth and sensitivity. To illustrate this, a family of microresonator sensors with broadband acoustic responses up to 40 MHz and noise-equivalent pressures as low as 1.6 mPa per √Hz have been fabricated and comprehensively characterized in terms of their acoustic performance. In addition, their practical application to high-resolution photoacoustic and ultrasound imaging is demonstrated. The favourable acoustic performance and design flexibility of the technology offers new opportunities to advance biomedical and industrial ultrasound-based techniques.
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页码:714 / 719
页数:5
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