The shadow of a laser beam

Fuente: arXiv
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Autori principali: Abrahao, Raphael A, Morin, Henri P N, Page, Jordan T R, Safari, Akbar, Boyd, Robert W, Lundeen, Jeff S
Natura: Preprint
Pubblicazione: 2024
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author Abrahao, Raphael A
Morin, Henri P N
Page, Jordan T R
Safari, Akbar
Boyd, Robert W
Lundeen, Jeff S
author_facet Abrahao, Raphael A
Morin, Henri P N
Page, Jordan T R
Safari, Akbar
Boyd, Robert W
Lundeen, Jeff S
contents Light, being massless, casts no shadow; under ordinary circumstances, photons pass right through each other unimpeded. Here, we demonstrate a laser beam acting like an object - the beam casts a shadow upon a surface when the beam is illuminated by another light source. We observe a regular shadow in the sense it can be seen by the naked eye, it follows the contours of the surface it falls on, and it follows the position and shape of the object (the laser beam). Specifically, we use a nonlinear optical process involving four atomic levels of ruby. We are able to control the intensity of a transmitted laser beam by applying another perpendicular laser beam. We experimentally measure the dependence of the contrast of the shadow on the power of the object laser beam, finding a maximum of approximately of approximately 22 percent, similar to that of a shadow of a tree on a sunny day. We provide a theoretical model that predicts the contrast of the shadow. This work opens new possibilities for fabrication, imaging, and illumination.
format Preprint
id arxiv_https___arxiv_org_abs_2403_08050
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The shadow of a laser beam
Abrahao, Raphael A
Morin, Henri P N
Page, Jordan T R
Safari, Akbar
Boyd, Robert W
Lundeen, Jeff S
Optics
Light, being massless, casts no shadow; under ordinary circumstances, photons pass right through each other unimpeded. Here, we demonstrate a laser beam acting like an object - the beam casts a shadow upon a surface when the beam is illuminated by another light source. We observe a regular shadow in the sense it can be seen by the naked eye, it follows the contours of the surface it falls on, and it follows the position and shape of the object (the laser beam). Specifically, we use a nonlinear optical process involving four atomic levels of ruby. We are able to control the intensity of a transmitted laser beam by applying another perpendicular laser beam. We experimentally measure the dependence of the contrast of the shadow on the power of the object laser beam, finding a maximum of approximately of approximately 22 percent, similar to that of a shadow of a tree on a sunny day. We provide a theoretical model that predicts the contrast of the shadow. This work opens new possibilities for fabrication, imaging, and illumination.
title The shadow of a laser beam
topic Optics
url https://arxiv.org/abs/2403.08050