首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Investigation into the thermal effects of a Nd:YVO4 crystal at 1342 nm using the bistability-like output characteristics
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Investigation into the thermal effects of a Nd:YVO4 crystal at 1342 nm using the bistability-like output characteristics

机译:使用双稳定性的输出特性对1342nm的Nd:YVO4晶体的热效应进行调查

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The influence of energy-transfer upconversion (ETU) and excited stimulated absorption (ESA) on the thermal effects of a Nd:YVO4 crystal was investigated in this paper. A stable continuous-wave (CW) single-frequency and intracavity frequency-doubled dual-wavelength 1342/671 nm laser was built, and the output power was manipulated by changing the transmissions of the output coupler. When the output coupler coated with a partial transmission film of 0.5% at 1342 nm was replaced by that of 8% at 1342 nm, the maximum output powers of the 671 nm and 1342 nm lasers ranged from 3.35 W and 1.08 W to 0.43 W and 6.35 W, respectively. By accurately measuring the threshold pump power as the incident pump power increased, a thermal loading of 6.8% caused by the ETU was successfully determined, which was the same for both output couplers. However, the thermal loading caused by the ESA had to be determined by measuring the threshold as the incident pump power decreased, and the measured thermal loading caused by the ESA was 14.03% for the output coupler with a transmission of 0.5%, which was larger than that of 9.13% for the transmission of 8% at 1342 nm. The measured results depicted that the thermal loadings caused by the ETU and ESA depended on the pump power and intracavity power of the 1342 nm laser, respectively. This technique for determining the thermal loadings of the Nd:YVO4 at 1342 nm using the bistability-like output characteristics is a good method of evaluating the thermal loadings and thermal lens effects of other laser crystals.
机译:研究了能量转移上转换(ETU)和激发受激吸收(ESA)对Nd:YVO4晶体热效应的影响。建立了稳定的连续波单频内腔倍频双波长1342/671nm激光器,通过改变输出耦合器的传输来控制输出功率。当在1342nm处涂有0.5%部分透射膜的输出耦合器被1342nm处涂有8%部分透射膜的输出耦合器替换时,671nm和1342nm激光器的最大输出功率分别为3.35w和1.08w至0.43w和6.35w。随着入射泵浦功率的增加,通过准确测量阈值泵浦功率,成功地确定了ETU引起的6.8%的热负荷,这对于两个输出耦合器都是相同的。然而,随着入射泵浦功率的降低,ESA引起的热负荷必须通过测量阈值来确定,对于传输率为0.5%的输出耦合器,ESA引起的热负荷测量值为14.03%,大于1342nm传输率为8%时的9.13%。测量结果表明,ETU和ESA产生的热负荷分别取决于1342nm激光器的泵浦功率和腔内功率。这种利用类似双稳态的输出特性来确定Nd:YVO4在1342nm处的热负载的技术是评估其他激光晶体的热负载和热透镜效应的一种很好的方法。

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