relation: http://publicatio.bibl.u-szeged.hu/34065/
title: A unified optical damage criterion based on the probability density distribution of detector signals
creator:  Somoskői Tamás
creator:  Vass Csaba
creator:  Mero M
creator:  Mingesz Róbert Zoltán
creator:  Bozóki Zoltán
creator:  Osvay Károly
subject: 01.03. Fizikai tudományok
description: Various methods and procedures have been developed so far to test laser induced optical damage. The question naturally arises, that what are the respective sensitivities of these diverse methods. To make a suitable comparison, both the processing of the measured primary signal has to be at least similar to the various methods, and one needs to establish a proper damage criterion, which has to be universally applicable for every method. We defined damage criteria based on the probability density distribution of the obtained detector signals. This was determined by the kernel density estimation procedure. We have tested the entire evaluation procedure in four well-known detection techniques: direct observation of the sample by optical microscopy; monitoring of the change in the light scattering power of the target surface and the detection of the generated photoacoustic waves both in the bulk of the sample and in the surrounding air.
publisher: International Society for Optics and Photonics (SPIE)
date: 2013
type: Könyv része
type: NonPeerReviewed
format: text
identifier: http://publicatio.bibl.u-szeged.hu/34065/1/2834332.pdf
identifier:     Somoskői Tamás;  Vass Csaba;  Mero M;  Mingesz Róbert Zoltán;  Bozóki Zoltán;  Osvay Károly: A unified optical damage criterion based on the probability density distribution of detector signals.    In:  45th Annual Laser Damage Symposium Proceedings - Laser-Induced Damage in Optical Materials: 2013.   Proceedings of SPIE  (8885).  International Society for Optics and Photonics (SPIE), Boulder (CO). (2013)  ISBN 9780819497536     
identifier: doi:10.1117/12.2030341
relation: https://doi.org/10.1117/12.2030341
relation: 2834332
language: eng