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首页> 外文期刊>Journal of Applied Physics >Nanosecond laser-induced damage at different initial temperatures of Ta2O5 films prepared by dual ion beam sputtering
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Nanosecond laser-induced damage at different initial temperatures of Ta2O5 films prepared by dual ion beam sputtering

机译:双离子束溅射制备的Ta 2 O 5 薄膜在不同初始温度下的纳秒激光诱导损伤

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摘要

Ta2O5 films were deposited by dual ion beam sputtering method. The nanosecond laser-induced damage threshold (LIDT) at different initial temperatures and time of the films was investigated by an in situ high temperature laser-induced damage testing platform. It was shown that, when the initial temperature increased from 298 K to 383 K, the LIDT at 1064 nm and 12 ns significantly decreased by nearly 14%. Then the LIDT at 1064 nm and 12 ns decreased slower with the same temperature increment. Different damage morphologies were found at different initial temperatures. At low initial temperatures, it was the defects-isolated damage while at high initial temperatures it was the defects-combined damage. The theoretical calculations based on the defect-induced damage model revealed that both the significant increase of the highest temperature and the duration contributed to the different damage morphologies. With the initial temperature being increased, the thermal-stress coupling damage mechanism transformed gradually to the thermal dominant damage mechanism.
机译:用双离子束溅射法沉积Ta 2 O 5 薄膜。通过原位高温激光诱导损伤测试平台研究了薄膜在不同初始温度和时间下的纳秒激光诱导损伤阈值(LIDT)。结果表明,当初始温度从298 K增加到383 K时,LIDT在1064 nm和12 ns处显着降低了近14%。然后,在相同的温度增量下,在1064 nm和12 ns处的LIDT下降较慢。在不同的初始温度下发现了不同的破坏形态。在较低的初始温度下,它是与缺陷隔绝的损伤,而在较高的初始温度下,则是与缺陷结合的损伤。基于缺陷引起的损伤模型的理论计算表明,最高温度的显着增加和持续时间均导致了不同的损伤形态。随着初始温度的升高,热应力耦合破坏机理逐渐转变为热显性破坏机理。

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