Sakadzić Sava, Wang Lihong V
Optical Imaging Laboratory, Department of Biomedical Engineering, 3120 TAMU, Texas A&M University, College Station, Texas 77843-3120, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Sep;72(3 Pt 2):036620. doi: 10.1103/PhysRevE.72.036620. Epub 2005 Sep 30.
We present an analytical solution for the acousto-optical modulation of multiply scattered light in a medium irradiated with a train of ultrasound pulses. Previous theory is extended to cases where the ultrasound-induced optical phase increments between the different scattering events are strongly correlated, and it is shown that the approximate similarity relation still holds. The relation between the ultrasound induced motions of the background fluid and the optical scatterers is generalized, and it is shown that correlation exists between the optical phase increments that are due to the scatterer movement and the optical phase increments that are due to the modulation of the optical index of refraction. Finally, it is shown that compared with the spectrum of ultrasound pulses, the power spectral density of acousto-optically modulated light is strongly attenuated at the higher ultrasound frequencies.
我们给出了在一列超声脉冲辐照的介质中,对多次散射光进行声光调制的解析解。先前的理论被扩展到不同散射事件之间超声诱导的光学相位增量高度相关的情况,并且表明近似相似关系仍然成立。背景流体和光学散射体的超声诱导运动之间的关系被推广,并且表明由于散射体运动引起的光学相位增量和由于光学折射率调制引起的光学相位增量之间存在相关性。最后,表明与超声脉冲的频谱相比,声光调制光的功率谱密度在较高超声频率下会大幅衰减。