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Correction of optical absorption and scattering variations in laser speckle rheology measurements

机译:校正激光散斑流变学测量中的光吸收和散射变化

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摘要

Laser Speckle Rheology (LSR) is an optical technique to evaluate the viscoelastic properties by analyzing the temporal fluctuations of backscattered speckle patterns. Variations of optical absorption and reduced scattering coefficients further modulate speckle fluctuations, posing a critical challenge for quantitative evaluation of viscoelasticity. We compare and contrast two different approaches applicable for correcting and isolating the collective influence of absorption and scattering, to accurately measure mechanical properties. Our results indicate that the numerical approach of Monte-Carlo ray tracing (MCRT) reliably compensates for any arbitrary optical variations. When scattering dominates absorption, yet absorption is non-negligible, diffusing wave spectroscopy (DWS) formalisms perform similar to MCRT, superseding other analytical compensation approaches such as Telegrapher equation. The computational convenience of DWS greatly simplifies the extraction of viscoelastic properties from LSR measurements in a number of chemical, industrial, and biomedical applications.
机译:激光散斑流变学(LSR)是一种通过分析反向散射散斑图样的时间波动来评估粘弹性质的光学技术。光学吸收的变化和减小的散射系数进一步调节了斑点波动,对粘弹性的定量评估提出了严峻的挑战。我们比较和对比了两种不同的方法,可用于校正和隔离吸收和散射的集体影响,以准确地测量机械性能。我们的结果表明,蒙特卡洛射线追踪(MCRT)的数值方法能够可靠地补偿任意光学变化。当散射在吸收中占主导地位,但吸收却不可忽略时,扩散波谱(DWS)形式表现与MCRT类似,取代了其他分析补偿方法,例如Telegrapher方程。 DWS的计算方便性极大地简化了在许多化学,工业和生物医学应用中从LSR测量中提取粘弹性质的过程。

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