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1.5-/spl mu/m emissions from laser-diode-pumped microchip Nd-doped solid-state lasers

机译:激光二极管泵浦微芯片掺N固态激光器发射的1.5 / splμm/ m发射

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Summary form only given. In the past decades, a wide variety of experimental laser materials and devices has been developed. Among them, the laser diode (LD) end-pumped microchip-type laser is the current device of choice. For Nd-doped lasers, as promising laser materials, there are three main manifolds for lasing transition. In the case of Nd:YAG, the 1.064 and 1.061 /spl mu/m transitions, /sup 4/F/sub 3/2//spl rarr//sup 4/I/sub 1/2/, provide the lowest threshold lasers for which the branching ratio of emission is highest. When the laser was cooled, the 1.839 /spl mu/m line and 0.946 /spl mu/m line could be observed while operation at 1.3 /spl mu/m also had been achieved. Similar ratios also have been reported in other Nd-doped lasers. Thus far, no emission of 1.5 /spl mu/m has been reported in Nd-doped lasers. On the other hand, high-energy modified lattice vibrations with 1400, 1700, and 2500 cm/sup -1/ have been reported for Nd in YVO/sub 4/. Under this condition, activated phonons may provide coherent scattering towards the regime of around 1.5 /spl mu/m, which has useful applications, such as communication and eye-safe long-distance range finding. We report the first observation of such emissions directly from the LD-pumped microchip Nd:YVO/sub 4/ laser as well as the LiNdP/sub 4/O/sub 12/ (LNP) laser.
机译:摘要表格仅给出。在过去的几十年中,已经开发了各种各样的实验激光材料和装置。其中,激光二极管(LD)端泵浦微芯片型激光器是当前的选择装置。对于ND掺杂激光器,作为承诺的激光材料,有三个用于激光过渡的主歧管。在ND:YAG的情况下,1.064和1.061 / SPL MU / M过渡,/ SUP 4 / F / SUB 3/2 // SPL RART // SUP 4 / I / SUB 1/2 /,提供最低阈值发射分支比率最高的激光器。当激光冷却时,可以观察到1.839 / SPL MU / M线和0.946 / SPL MU / M线,同时还达到1.3 / SPL MU / M的操作。在其他ND掺杂激光器中也已经报道了类似的比率。到目前为止,在ND掺杂的激光器中没有报道1.5 / SPL MU / m的排放。另一方面,在YVO / SUB 4 / SUB中的ND报告了具有1400,1700和2500cm / sup -1 / ud-1的高能改性晶格振动。在这种情况下,激活的声子可以向大约1.5 / SPL MU / m的状态提供相干散射,其具有有用的应用,例如通信和眼睛安全的长距离范围。我们报告了直接从LD泵浦微芯片ND:YVO / Sub 4 /激光以及LindP / Sub 4 / O / Sub 12 /(LNP)激光器的第一次观察这种排放。

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