Published September 2018 | Version v1
Journal article

Photoacoustic response of a transmission photoacoustic configuration for two-layer samples with thermal memory

  • 1. University of Belgrade, Vinca Institute of Nuclear Sciences (Serbia)
  • 2. University of Novi Sad, Faculty of Technical Sciences (Serbia)
  • 3. University of Belgrade, Institute of Physics (Serbia)

Description

In this paper, the models of surface temperature variations have been derived. Based on these models, photoacoustic (PA) response has been commented for transmission PA setup configurations of two-layer optically transparent samples, including the impact of finite heat propagation velocity through both layers (thermal memory) and the existence of volume absorption in both layers. By analyzing the derived model it has been shown that many parameters influence the photoacoustic response. Based on the derived model, some approximations have been discussed in order to enable the development of more accurate inverse solutions of photoacoustic problem, and the estimation of optical, thermal and other related physical properties of versatile materials. By using specific two-layer structure that consist of aluminum sample coated with layer of color dye, used in some photoacoustic experimental investigations, the influence of thermal memory properties of either the sample or the coating has been discussed.

Additional details

Identifiers

Publishing Information

Journal Title
Optical and Quantum Electronics
Journal Volume
50
Journal Issue
9
Journal Page Range
p. 1-10
ISSN
0306-8919
CODEN
OQELDI

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51023385
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Descriptors DEI
ABSORPTION; ALUMINIUM; APPROXIMATIONS; DYES; HEAT TRANSFER; MATHEMATICAL SOLUTIONS; OPACITY; OPTICS; PHOTOACOUSTIC EFFECT; TEMPERATURE DEPENDENCE; TRANSMISSION
Descriptors DEC
CALCULATION METHODS; ELEMENTS; ENERGY TRANSFER; METALS; OPTICAL PROPERTIES; PHYSICAL PROPERTIES; SORPTION

Optional Information

Copyright
Copyright (c) 2018 Springer Science+Business Media, LLC, part of Springer Nature
Notes
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