Thermal analysis of the volume absorber in pulsed excimer laser calorimeters

Citation
Dh. Chen et Zm. Zhang, Thermal analysis of the volume absorber in pulsed excimer laser calorimeters, INT J HEAT, 43(17), 2000, pp. 3061-3072
Citations number
13
Categorie Soggetti
Mechanical Engineering
Journal title
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
ISSN journal
00179310 → ACNP
Volume
43
Issue
17
Year of publication
2000
Pages
3061 - 3072
Database
ISI
SICI code
0017-9310(200009)43:17<3061:TAOTVA>2.0.ZU;2-G
Abstract
Thermal modeling and analysis of the volume absorber in the pulsed excimer laser calorimeters are very important. In this work, Gaussian distributions are used to model the temporal and spatial distributions of the laser beam and an exponential decay function is used to model the internal absorption of the laser power. A finite-element method is employed to simulate the sp ace- and time-dependence of temperature in the volume absorber. A three-dim ensional model and an axial-symmetric model are built and used to study the heating effects of single pulse and multiple pulses on the present design, respectively. Furthermore, a new design is proposed, in which the absorber is not optically thick. A one-dimensional model and an axial-symmetric mod el, in which the reflection at the interface and the absorption on the copp er surface are considered, are used to study the heating effects of single pulse and multiple pulses on the new design. The comparison of the present design to the new design shows that the energy loss and nonequivalence in t he new design are smaller than those in the present design. Hence, the new design can increase the accuracy and dynamic range of calorimeters.. This w ork will help the future design of optical calorimeters for measuring the p ulse energy of excimer lasers in the deep ultraviolet. (C) 2000 Elsevier Sc ience Ltd. All rights reserved.