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基于脉冲干涉测量法的宽带光学传感技术。

Wideband optical sensing using pulse interferometry.

作者信息

Rosenthal Amir, Razansky Daniel, Ntziachristos Vasilis

机构信息

Institute for Biological and Medical Imaging (IBMI), Technical University of Munich and Helmholtz Center Munich, Neuherberg, Germany.

出版信息

Opt Express. 2012 Aug 13;20(17):19016-29. doi: 10.1364/OE.20.019016.

Abstract

Advances in fabrication of high-finesse optical resonators hold promise for the development of miniaturized, ultra-sensitive, wide-band optical sensors, based on resonance-shift detection. Many potential applications are foreseen for such sensors, among them highly sensitive detection in ultrasound and optoacoustic imaging. Traditionally, sensor interrogation is performed by tuning a narrow linewidth laser to the resonance wavelength. Despite the ubiquity of this method, its use has been mostly limited to lab conditions due to its vulnerability to environmental factors and the difficulty of multiplexing - a key factor in imaging applications. In this paper, we develop a new optical-resonator interrogation scheme based on wideband pulse interferometry, potentially capable of achieving high stability against environmental conditions without compromising sensitivity. Additionally, the method can enable multiplexing several sensors. The unique properties of the pulse-interferometry interrogation approach are studied theoretically and experimentally. Methods for noise reduction in the proposed scheme are presented and experimentally demonstrated, while the overall performance is validated for broadband optical detection of ultrasonic fields. The achieved sensitivity is equivalent to the theoretical limit of a 6 MHz narrow-line width laser, which is 40 times higher than what can be usually achieved by incoherent interferometry for the same optical resonator.

摘要

高精细度光学谐振器制造技术的进步为基于共振偏移检测的小型化、超灵敏、宽带光学传感器的发展带来了希望。此类传感器具有许多潜在应用,其中包括超声和光声成像中的高灵敏检测。传统上,传感器询问是通过将窄线宽激光器调谐到共振波长来进行的。尽管这种方法很普遍,但由于其易受环境因素影响以及多路复用困难(成像应用中的关键因素),其应用大多局限于实验室条件。在本文中,我们开发了一种基于宽带脉冲干涉测量的新型光学谐振器询问方案,该方案有可能在不降低灵敏度的情况下实现对环境条件的高稳定性。此外,该方法可以实现多个传感器的多路复用。从理论和实验上研究了脉冲干涉测量询问方法的独特特性。提出并通过实验证明了所提方案中的降噪方法,同时对超声场的宽带光学检测的整体性能进行了验证。所实现的灵敏度等同于6 MHz窄线宽激光器的理论极限,比相同光学谐振器采用非相干干涉测量通常所能达到的灵敏度高40倍。

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