Laboratoire Kastler Brossel, École Normale Supérieure-Paris Sciences et Lettres (PSL) Research University, CNRS, Université Pierre et Marie Curie-Sorbonne Universités, Collège de France, 24 rue Lhomond, 75005 Paris, France.
École Supérieure de Physique et de Chimie Industrielles de la Ville de Paris, PSL Research University, CNRS, Institut Langevin, 1 rue Jussieu, 75005 Paris, France.
Science. 2017 Nov 10;358(6364):765-768. doi: 10.1126/science.aan4054.
The microstructure of a medium strongly influences how light propagates through it. The amount of disorder it contains determines whether the medium is transparent or opaque. Theory predicts that exciting such a medium homogeneously and isotropically makes some of its optical properties depend only on the medium's outer geometry. Here, we report an optical experiment demonstrating that the mean path length of light is invariant with respect to the microstructure of the medium it scatters through. Using colloidal solutions with varying concentration and particle size, the invariance of the mean path length is observed over nearly two orders of magnitude in scattering strength. Our results can be extended to a wide range of systems-however ordered, correlated, or disordered-and apply to all wave-scattering problems.
介质的微观结构极大地影响着光在其中的传播方式。其所含无序程度决定了介质是透明还是不透明。理论预测,均匀各向同性地激发这样的介质会使某些光学性质仅取决于介质的外部几何形状。在这里,我们报告了一个光学实验,证明了光的平均路径长度与它散射通过的介质的微观结构无关。使用具有不同浓度和粒径的胶体溶液,在散射强度上近两个数量级的范围内观察到平均路径长度的不变性。我们的结果可以扩展到广泛的系统——无论多么有序、相关或无序——并适用于所有的波散射问题。