Zhang Anqi, Piao Daqing
School of Electrical and Computer Engineering, Oklahoma State University, Stillwater, Oklahoma 74078, USA.
J Opt Soc Am A Opt Image Sci Vis. 2012 Jul 1;29(7):1445-58. doi: 10.1364/JOSAA.29.001445.
Part IV examines frequency-domain photon diffusion in a homogeneous medium enclosed by a "concave" circular cylindrical applicator or enclosing a "convex" circular cylindrical applicator, both geometries being infinite in the longitudinal dimension. The aim is to assess by analogical and finite-element methods the changes of AC amplitude, modulation depth, and phase with respect to the line-of-sight source-detector distance for a source and a detector located along the azimuthal or longitudinal direction on the concave or convex medium-applicator interface. By comparing to their counterparts along a straight line on a semi-infinite medium-applicator interface, for the same line-of-sight source-detector distance, it is found that: (1) the decay-rate of AC photon fluence is smaller along the azimuthal direction and greater along the longitudinal direction on the concave interface, (2) the decay-rate of AC photon fluence is greater along the azimuthal direction and smaller along the longitudinal direction on the convex interface, (3) the modulation depth along both azimuthal and longitudinal directions decays more slowly on the concave interface and faster on the convex interface, and (4) the phase along both azimuthal and longitudinal directions increases more slowly on the concave interface and faster on the convex interface.
第四部分研究了在由“凹形”圆柱形容器包围的均匀介质中或包围“凸形”圆柱形容器的均匀介质中的频域光子扩散,这两种几何形状在纵向维度上都是无限的。目的是通过类比和有限元方法,评估位于凹形或凸形介质 - 容器界面上沿方位角或纵向方向的源和探测器的交流幅度、调制深度和相位相对于视线源 - 探测器距离的变化。通过与在半无限介质 - 容器界面上沿直线的对应情况进行比较,对于相同的视线源 - 探测器距离,发现:(1) 在凹形界面上,交流光子通量的衰减率沿方位角方向较小,沿纵向方向较大;(2) 在凸形界面上,交流光子通量的衰减率沿方位角方向较大,沿纵向方向较小;(3) 在凹形界面上,沿方位角和纵向方向的调制深度衰减较慢,在凸形界面上衰减较快;(4) 在凹形界面上,沿方位角和纵向方向的相位增加较慢,在凸形界面上增加较快。