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Ultrasound modulation of coherent light in a multiple-scattering medium: experimental verification of nonzero average phase carried by light

机译:多散射介质中相干光的超声调制:光携带的非零平均相位的实验验证

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摘要

We demonstrate the phase fluctuation introduced by oscillation of scattering centers in the focal volume of an ultrasound transducer in an optical tomography experiment has a nonzero mean. The conditions to be met for the above are: (i) the frequency of the ultrasound should be in the vicinity of the most dominant natural frequency of vibration of the ultrasound focal volume, (ii) the corresponding acoustic wavelength should be much larger than n*, a modified transport mean-free-path applicable for phase decorrelation and (iii) the focal volume of the ultrasound transducer should not be larger than 4 – 5 times (n*)3. We demonstrate through simulations that as the ratio of the ultrasound focal volume to (n*)3 increases, the average of the phase fluctuation decreases and becomes zero when the focal volume becomes greater than around 4(n*)3; and through simulations and experiments that as the acoustic frequency increases from 100 Hz to 1 MHz, the average phase decreases to zero. Through experiments done in chicken breast we show that the average phase increases from around 110° to 130° when the background medium is changed from water to glycerol, indicating that the average of the phase fluctuation can be used to sense changes in refractive index deep within tissue.
机译:我们证明在光学层析成像实验中由超声换能器的焦点体积中散射中心的振荡引起的相位波动具有非零均值。满足以上条件的条件是:(i)超声频率应在超声焦点体积振动的最主要固有频率附近;(ii)相应的声波波长应远大于<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ m1”溢出=“ scroll”> n * ,这是一种适用于相位解相关的改进的传输均值自由路径,并且(iii)超声换能器的焦距不应大于4到5倍 < mrow> n * < / mo> 3 。我们通过仿真证明,作为超声焦点体积与 n * 3 增大,相位波动的平均值当焦点体积变得大于 < mn> 4 n * 3 ;通过仿真和实验,随着声频从100 Hz增加到1 MHz,平均相位减小到零。通过在鸡胸肉中进行的实验,我们发现,当背景介质从水变为甘油时,平均相位从110°左右增加到130°,这表明相位波动的平均值可用于感知深层内折射率的变化组织。

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