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Influence of nanoscale temperature rises on photoacoustic generation: Discrimination between optical absorbers based on thermal nonlinearity at high frequency

机译:纳米级温度上升对光声产生的影响:基于高频热非线性的光吸收器之间的区别

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摘要

In this work, we experimentally investigate thermal-based nonlinear photoacoustic generation as a mean to discriminate between different types of absorbing particles. The photoacoustic generation from solutions of dye molecules and gold nanospheres (same optical densities) was detected using a high frequency ultrasound transducer (20 MHz). Photoacoustic emission was observed with gold nanospheres at low fluence for an equilibrium temperature around 4 °C, where the linear photoacoustic effect in water vanishes, highlighting the nonlinear emission from the solution of nanospheres. The photoacoustic amplitude was also studied as a function of the equilibrium temperature from 2 °C to 20 °C. While the photoacoustic amplitude from the dye molecules vanished around 4 °C, the photoacoustic amplitude from the gold nanospheres remained significant over the whole temperature range. Our preliminary results suggest that in the context of high frequency photoacoustic imaging, nanoparticles may be discriminated from molecular absorbers based on nanoscale temperature rises.
机译:在这项工作中,我们通过实验研究基于热的非线性光声产生,以此来区分不同类型的吸收粒子。使用高频超声传感器(20 MHz)检测了染料分子和金纳米球溶液(相同的光密度)产生的光声。在大约4°C的平衡温度下,金纳米球在低通量下观察到光声发射,水中的线性光声效应消失了,这突出了纳米球溶液的非线性发射。还研究了光声振幅与2°C至20°C平衡温度之间的关系。虽然染料分子的光声振幅在4°C左右消失,但金纳米球的光声振幅在整个温度范围内仍然很明显。我们的初步结果表明,在高频光声成像的背景下,基于纳米级的温度升高,可以将纳米颗粒与分子吸收剂区分开。

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