Faez Sanli, Johnson P M, Lagendijk Ad
FOM Institute for Atomic and Molecular Physics AMOLF, Science Park 113, 1098 XG Amsterdam, The Netherlands.
Phys Rev Lett. 2009 Jul 31;103(5):053903. doi: 10.1103/PhysRevLett.103.053903.
We introduce a new approach for measuring both the effective medium and the transport properties of light propagation in heterogeneous media. Our method utilizes the conceptual equivalence of frequency variation with a change in the effective index of refraction. Experimentally, we measure intensity correlations via spectrally resolved refractive index tuning, controlling the latter via changes in the ambient pressure. Our experimental results perfectly match a generalized transport theory that incorporates the effective medium and predicts a precise value for the diffusion constant. Thus, we directly confirm the applicability of the effective medium concept in strongly scattering materials.
我们介绍了一种用于测量非均匀介质中光传播的有效介质和传输特性的新方法。我们的方法利用了频率变化与有效折射率变化之间的概念等效性。在实验中,我们通过光谱分辨折射率调谐来测量强度相关性,并通过改变环境压力来控制后者。我们的实验结果与包含有效介质并预测扩散常数精确值的广义传输理论完美匹配。因此,我们直接证实了有效介质概念在强散射材料中的适用性。