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- W2015498338 abstract "Mechanoluminescence and thermal radiation induced in the back side of metallic targets irradiated by a laser pulse were investigated. Neodymium glass laser was used (lambda equals 1.06 micrometer, duration of pulse 1.2 ms, beam diameter 2 - 5 mm); two detective systems: (1) photomultiplier with sensitivity of 10<SUP>-16</SUP> W in the region 300 - 800 nm; (2) photoresistor with sensitivity of 10<SUP>-10</SUP>W in the region 800 - 1500 nm; gold, silver, platinum, copper and titanium targets 1 - 0.1 mm thick, 40 mm diameter and investigated optical radiation (luminescent and thermal) from back side of target as function of laser pulse energy, number of laser pulses and structure (density of dislocations) of target material. The luminescence and thermal radiation of target back side were registered. The laser pulse energy was quite small: P<SUB>las</SUB> approximately equals 0.2 P<SUB>th</SUB> (P<SUB>th</SUB> - energy threshold of the sample). The evolution of luminescence by cyclic irradiation was observed. It is demonstrated that the excitation of luminescence depends on the initial structure of the metallic target on the density of dislocations." @default.
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- W2015498338 date "1997-04-04" @default.
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- W2015498338 title "<title>Laser-induced phenomena in metals</title>" @default.
- W2015498338 doi "https://doi.org/10.1117/12.271689" @default.
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