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Multiphoton absorption and damage threshold of Yb3#x002B; and Tm3#x002B; doped SiO2 fiber core

机译:Yb 3 + 和tm 3 + 掺杂SiO 2 纤维芯的多光子吸收和损伤阈值

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摘要

Using the Yb3+ and Tm3+ doped SiO2 fiber rods as the samples and ultrafast 800 nm femtosecond (fs) laser sources, the multiphoton absorption characteristics and damage threshold are experimental investigated based on the open Z-scan and nonlinear transmission measurement technology. The five-photon absorption coefficient of the Yb3+ doped fiber core has nearly tenfold increment than that of the fiber clad. But the five-photon absorption coefficient of the Tm3+-dopd fiber core is less than 5% of the fiber clad. With the incident fs laser power increasing, the five-photon absorption coefficient of three different samples is decreased. Further analyzing the open Z-scan results, the multiphoton absorption should contain the six-photon absorption process. Using the nonlinear transmission measurement technology, the damage thresholds are measured, and they are 12.1 TW/ cm2 (the Yb3+-doped fiber core) and 16.4 TW/cm2 (fiber clad).
机译:使用镱 3 + 和Tm 3 + 掺杂的SiO 2 纤维杆作为样品和超快800nm的飞秒(fs)的激光源,所述多光子吸收特性和损伤阈值是实验研究基于开放Z-扫描和非线性传输测量技术。镱的五个光子吸收系数 3 + 掺杂光纤纤芯具有比包层光纤的近十倍增量。但是的T m的五个光子吸收系数 3 + -dopd光纤芯是光纤包层的小于5%。与入射飞秒激光功率的增加,的三种不同样品的五个光子吸收系数降低。在进一步分析开放Z-扫描结果,多光子吸收应该包含六个光子吸收过程。使用非线性传输测量技术,所述损伤阈值被测量,并且它们是12.1 TW /厘米 2 (镱 3 + 掺杂光纤芯)和16.4 TW /厘米 2 (纤维包层)。

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