Can one make a laser out of cardboard?
arXiv:1507.00961 · doi:10.1214/16-AAP1180
Abstract
We consider two dimensional and three dimensional semi-infinite tubes made of "Lambertian" material, so that the distribution of the direction of a reflected light ray has the density proportional to the cosine of the angle with the normal vector. If the light source is far away from the opening of the tube then the exiting rays are (approximately) collimated in two dimensions but are not collimated in three dimensions. An observer looking into the three dimensional tube will see "infinitely bright" spot at the center of vision. In other words, in three dimensions, the light brightness grows to infinity near the center as the light source moves away.
36 pages; to appear in Annals of Applied Probability
References in corpus (4)
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- Knudsen gas in a finite random tube: transport diffusion and first passage properties
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- Sequences of compatible periodic hybrid orbits of prefractal Koch snowflake billiards