Related Experiment Video
Updated: Aug 9, 2026

Measuring Spatially- and Directionally-varying Light Scattering from Biological Material
Published on: May 20, 2013
Light extinction and absorption by arbitrarily oriented finite circular cylinders by use of geometrical path
1Institute for Ultrafast Spectroscopy, NY State Center of Advanced Technology for Ultrafast Photonic Materials and Applications, New York, 10031, USA. minxu@sci.ccny.cuny.edu
Abstract:
From the geometrical path statistics of rays in an anomalous-diffraction theory (ADT) [Opt. Lett. 28, 179 (2003)] closed-form expressions for the geometrical path distribution of rays and analytical formulas for the optical efficiencies of finite circular cylinders oriented in an arbitrary direction with respect to the incident light are derived. The characteristics of the shapes of the cylinders produce unique features in the geometrical path distributions of the cylinders compared with spheroids. Gaussian ray approximations, which depend only on the mean and the mean-squared geometrical paths of rays, of the optical efficiencies of finite circular cylinders and spheroids are compared with the exact optical efficiencies in ADT. The influence of the difference in shape between cylinders and spheroids on the optical efficiencies in ADT is illustrated by their respective geometrical path distributions of rays.
Related Concept Videos
UV–Vis Spectroscopy: Beer–Lambert Law
Gauss's Law: Spherical Symmetry
Gauss's Law: Cylindrical Symmetry
Perpendicular-Axis Theorem
Consider a circular disc of mass M and radius R lying along an x-y plane. The origin lies at the center of the disc, and the z-axis is perpendicular to the disc's plane. All three axes coincide at the disc's center. The moment of inertia of this...
Deformation in a Circular Shaft
Steady, Laminar Flow in Circular Tubes

