Fukshansky L, Fukshansky-Kazarinova N, Remisowsky A M
Appl Opt. 1991 Aug 1;30(22):3145-53. doi: 10.1364/AO.30.003145.
Calculations of radiative transfer require knowledge of the absorption and scattering coefficients and the asymmetry factor of scattering in the medium. A method is presented for estimating these coefficients in living plant leaves from fiber-optic measurements. We consider the plant leaf as consisting of two layers of different refractive indices and with reflecting surfaces. Light intensities at the boundaries of these layers in several irradiated plant leaves have been measured using a thin (70-microm) glass fiber connected to a photomultiplier. The diffuse reflection and transmission were measured with an integrating sphere. From these values we derive an estimation of the scattering and absorption coefficients and the asymmetry factor of scattering applying an inversion of the multiflux theory of light propagation in turbid media. In addition, we compare these coefficients with those obtained by using the Kubelka-Munk theory.
辐射传输的计算需要了解介质中的吸收系数、散射系数以及散射不对称因子。本文提出了一种通过光纤测量来估算活体植物叶片中这些系数的方法。我们将植物叶片视为由两层具有不同折射率且带有反射面的结构组成。使用连接到光电倍增管的细(70微米)玻璃纤维,测量了几片受辐照植物叶片中这些层边界处的光强。利用积分球测量了漫反射和透射。根据这些测量值,通过对混浊介质中光传播的多通量理论进行反演,我们得出了散射系数、吸收系数以及散射不对称因子的估算值。此外,我们还将这些系数与使用库贝尔卡 - 芒克理论获得的系数进行了比较。