Yadlowsky M J, Schmitt J M, Bonner R F
Appl Opt. 1995 Sep 1;34(25):5699-707. doi: 10.1364/AO.34.005699.
We show that the multiple-scatter rejection provided by optical coherence microscopy (low-coherence interferometry) can be incomplete in optically turbid media and that multiple scattering manifests itself in two distinct ways. Multiple small-angle scattering results in an effective probe field that is stronger than expected from a first-order beam extinction model, but that contains a distorted wave front that enhances the apparent reflectance of small structures relative to those that are larger than the unscattered incident beam. Multiple wide-angle scattering produces a broad diffuse haze that reduces the contrast of subsequent features.
我们表明,光学相干显微镜(低相干干涉测量法)所提供的多重散射抑制在光学浑浊介质中可能并不完全,并且多重散射以两种不同方式表现出来。多次小角度散射会产生一个有效的探测场,该探测场比一阶光束消光模型预期的更强,但包含一个扭曲的波前,相对于大于未散射入射光束的结构,该波前增强了小结构的表观反射率。多次广角散射会产生广泛的漫射雾霭,降低后续特征的对比度。