Campbell S D, O'connell A K, Menon S, Su Q, Grobe R
Intense Laser Physics Theory Unit and Department of Physics, Illinois State University, Normal, Illinois 61790-4560, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Dec;74(6 Pt 1):061909. doi: 10.1103/PhysRevE.74.061909. Epub 2006 Dec 26.
We inject an angularly collimated laser beam into a scattering medium of a nondairy creamer-water solution and examine the distribution of the scattered light along the optical axis as a function of the source-detector spacing. The experimental and simulated data obtained from a Monte Carlo simulation suggest four regimes characterizing the transition from unscattered to diffusive light. We compare the data also with theoretical predictions based on a first-order scattering theory for regions close to the source, and with diffusionlike theories for larger source-detector spacings. We demonstrate the impact of the measurement process and the effect of the unavoidable absorption of photons by the detection fiber on the light distribution inside the medium. We show that the range of validity of these theories can depend on the experimental parameters such as the diameter and acceptance angle of the detection fiber.
我们将一束角度准直的激光束注入到一种非乳制奶精 - 水溶液的散射介质中,并研究沿光轴的散射光分布随源 - 探测器间距的变化情况。从蒙特卡罗模拟获得的实验数据和模拟数据表明,有四种状态表征了从非散射光到漫射光的转变。我们还将这些数据与基于靠近源区域的一阶散射理论的理论预测以及较大源 - 探测器间距下的类扩散理论进行了比较。我们展示了测量过程的影响以及检测光纤不可避免地吸收光子对介质内部光分布的影响。我们表明,这些理论的有效范围可能取决于实验参数,如检测光纤的直径和接收角。