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Total internal reflection photoacoustic detection spectroscopy

机译:全内反射光声检测光谱

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Total Internal Reflection Photoacoustic Spectroscopy (TIRPAS) is a method that exploits the evanescent field of a nanosecond duration laser pulse reflecting off a glass/water interface to generate photoacoustic responses. These photoacoustic events are generated in light absorbing analytes suspended in the fluid medium in contact with the glass that are within the penetration depth of the evanescent wave. This method has been employed in previous studies by Hinoue et al. Hinoue et al. used an optically chopped HeNe laser at 632.8 nm to detect Brilliant Blue FCF dye at different angles of incidence. In recent years, the advent of high power nanosecond pulsed tunable lasers has allowed for the re-visitation of the TIRPAS idea under stress confinement and orders of magnitude larger peak power conditions. Compared to conventional detection methods, this approach has the potential to detect much smaller quantities of disease indicators, such as circulating tumor cells and hemazoin crystals in malaria, than other optical methods. The detection limit of the TIRPAS system was quantified using chlorazol black solution with an absorption coefficient of 55 cm~(-1) at 532 nm. Interaction with the evanescent field was verified by varying the angle of incidence of the probe laser beam that generated the photoacoustic waves, thereby changing the penetration depth of the evanescent field as well as the photoacoustic spectroscopy effect from angled excitation.
机译:全内反射光声光谱法(TIRPAS)是一种利用从玻璃/水界面反射的纳秒持续时间激光脉冲的field逝场来产生光声响应的方法。这些光声事件在悬浮在与玻璃接触的流体介质中的吸光分析物中产生,该分析物在van逝波的穿透深度之内。 Hinoue等人在先前的研究中已经采用了这种方法。 Hinoue等。使用了一个在632.8 nm处切碎的HeNe激光来检测不同入射角下的亮蓝FCF染料。近年来,高功率纳秒脉冲可调谐激光器的出现允许重新审视TIRPAS在应力限制和较大峰值功率条件下的数量级。与传统的检测方法相比,这种方法与其他光学方法相比,有潜力检测出数量更少的疾病指示剂,例如疟疾中的循环肿瘤细胞和血红素晶体。 TIRPAS系统的检出限采用氯唑黑溶液定量,在532 nm处的吸收系数为55 cm〜(-1)。通过改变产生光声波的探测激光束的入射角,从而改变the逝场的穿透深度以及来自成角度激发的光声光谱学效应,来验证与van逝场的相互作用。

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