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Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/138776

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Title
10 kHz repetition rate solid-state dye laser pumped by a diode-pumped solid state laser
Related
Optics communications, Vol. 218, Issue 4-6, (2003), p.359-363
DOI
10.1016/S0030-4018(03)01207-0
Publisher
Elsevier B V
Date
2003
FoR/RFCD Code(s)
020500 Optical Physics
Author/Creator
Abedin, K. M
Author/Creator
Alvarez, M
Author/Creator
Costela, A
Author/Creator
Garcia-Moreno, I
Author/Creator
Garcia, O
Author/Creator
Sastre, R
Author/Creator
Coutts, D. W
Author/Creator
Webb, C. E
Description
We describe the operation of an all solid-state pulsed dye laser of high repetition rate (10 kHz) pumped by a diode-pumped laser. Three different active media in the form of coin-sized disks were investigated: the dye rhodamine 6G doped in a copolymer of methyl methacrylate (MMA) and 2-hydroxyethyl methacrylate (HEMA) [Rh6G/P(MMA:HEMA)], and the dye pyrromethene 567 (PM567) doped in copolymers of MMA with pentaerythritol triacrylate (PETA) and with pentaerythritol tetraacrylate (PETRA) [PM567/P(MMA:PETA) and PM567/P(MMA:PETRA)]. Pump radiation at 527nm was provided by a frequency-doubled diode-pumped Nd:YLF laser Q-switched at 10 kHz. Laser output was observed with an initial average power of 560 mW for Rh6G in P(MMA:HEMA), and with an initial average power of 430 mW for PM567 in P(MMA:PETRA) and 220 mW for PM567 in P(MMA:PETA). In the case of Rh6G/P(MMA:HEMA), the output decreased to about half the initial value after about 6.6 min (or about 4.0 million shots) due to dye degradation. The device constitutes a tunable, all solid-state, high repetition rate laser system possibly suitable for biomedical and dermatological applications.
Description
5 page(s)
Subject Keyword
020500 Optical Physics
Subject Keyword
solid-state dye laser
Subject Keyword
high repetition rate
Subject Keyword
doped polymer
Subject Keyword
rhodamine
Subject Keyword
pyrromethene
Subject Keyword
biomedical applications
Resource Type
journal article
Organisation
Macquarie University. Dept. of Physics and Astronomy

Identifier
http://hdl.handle.net/1959.14/138776
Identifier
ISSN:0030-4018
Identifier
mq-rm-2006008622
Language
eng
Reviewed
Reviewed
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Citation Format
E-mail Address
Subject
"Optics communications"
 
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