@inproceedings{5c999826586f49bc86b7e4067a7d4088,
title = "Diffraction-based optical sensor detection system for capture-restricted environments",
abstract = "The use of digital cameras and camcorders in prohibited areas presents a growing problem. Piracy in the movie theaters results in huge revenue loss to the motion picture industry every year, but still image and video capture may present even a bigger threat if performed in high-security locations. While several attempts are being made to address this issue, an effective solution is yet to be found. We propose to approach this problem using a very commonly observed optical phenomenon. Cameras and camcorders use CCD and CMOS sensors, which include a number of photosensitive elements/pixels arranged in a certain fashion. Those are photosites in CCD sensors and semiconductor elements in CMOS sensors. They are known to reflect a small traction of incident light, but could also act as a diffraction grating, resulting in the optical response that could be utilized to identify the presence of such a sensor. A laser-based detection system is proposed that accounts for the elements in the optical train of the camera, as well as the eye-safety of the people who could be exposed to optical beam radiation. This paper presents preliminary experimental data, as well as the proof-of-concept simulation results.",
keywords = "CCD sensor, CMOS sensor, Camera detection, Diffraction, Laser",
author = "Khandekar, \{Rahul M.\} and Nikulin, \{Vladimir V.\}",
year = "2008",
doi = "10.1117/12.780923",
language = "English",
isbn = "9780819471369",
series = "Proceedings of SPIE - The International Society for Optical Engineering",
booktitle = "Optics and Photonics in Global Homeland Security IV",
note = "Optics and Photonics in Global Homeland Security IV ; Conference date: 17-03-2008 Through 20-03-2008",
}