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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >An investigation of the ability of modified radiative transfer equations to accommodate laws of geometrical optics
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An investigation of the ability of modified radiative transfer equations to accommodate laws of geometrical optics

机译:关于修改后的辐射传递方程以适应几何光学定律的能力的研究

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摘要

The radiative transfer equation (RTE) and its approximations are widely used for describing light propagation in biological tissues. However, the RTE is valid for media with constant refractive indices, an assumption that does not hold in many practical situations. Recently three RTEs for media with spatially varying refractive index (RTEvri) have been proposed to eliminate that limitation. In this paper we test the RTE and the new RTEvris, applying them to solve two problems of geometrical optics with well-known solutions. We show that only one of those equations gives solutions consistent with the laws of geometrical optics due to its ability to model the effect of spatially varying refractive index and non-negligible ray divergence. This process allows us to determine which RTEvri provides the best description of light propagation in turbid media with spatially varying refractive index and a link between the radiative transfer theory and geometrical optics.
机译:辐射传递方程(RTE)及其近似值广泛用于描述光在生物组织中的传播。但是,RTE对于具有恒定折射率的介质有效,这一假设在许多实际情况下并不成立。最近,针对具有空间变化的折射率(RTEvri)的介质提出了三种RTE,以消除该限制。在本文中,我们对RTE和新的RTEvris进行了测试,并将它们用于解决几何光学方面的两个已知问题。我们表明,由于这些方程能够对空间变化的折射率和不可忽略的光线发散的影响进行建模,因此只有其中一个方程可以提供符合几何光学定律的解。这个过程使我们能够确定哪个RTEvri可以最好地描述光在浑浊的介质中的传播,该浑浊的介质具有空间变化的折射率以及辐射传输理论和几何光学之间的联系。

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