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Multi-wavelength emission through self-induced second-order wave-mixing processes from a Nd3+ doped crystalline powder random laser

机译:Nd3 +掺杂晶体粉末随机激光器通过自感应二阶混频过程产生多波长发射

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摘要

Random lasers (RLs) based on neodymium ions (Nd3+) doped crystalline powders rely on multiple light scattering to sustain laser oscillation. Although Stokes and anti-Stokes Nd3+ RLs have been demonstrated, the optical gain obtained up to now was possibly not large enough to produce self-frequency conversion. Here we demonstrate self-frequency upconversion from Nd3+ doped YAl3(BO3)4 monocrystals excited at 806 nm, in resonance with the Nd3+ transition 4I9/2 → 4F5/2. Besides the observation of the RL emission at 1062 nm, self-converted second-harmonic at 531 nm, and self-sum-frequency generated emission at 459 nm due to the RL and the excitation laser at 806 nm, are reported. Additionally, second-harmonic of the excitation laser at 403 nm was generated. These results exemplify the first multi-wavelength source of radiation owing to nonlinear optical effect in a Nd3+ doped crystalline powder RL. Contrary to the RLs based on dyes, this multi-wavelength light source can be used in photonic devices due to the large durability of the gain medium.
机译:基于钕离子(Nd 3 + )掺杂的结晶粉末的随机激光器(RLs)依靠多次光散射来维持激光振荡。尽管已经证明了斯托克斯和反斯托克斯Nd 3 + RL,但是到目前为止获得的光学增益可能还不足以产生自频率转换。在这里,我们证明了Nd 3 + 掺杂的YAl3(BO3)4单晶在806 nm激发并与Nd 3 + 跃迁 4 < / sup> I9 / 2→ 4 F5 / 2。除了观察到1062 nm处的RL发射外,还报告了由于RL和806 nm处的激发激光而在531 nm处发生的自转换二次谐波和在459 nm处产生的自和频率产生的发射。另外,产生了403 nm激发激光的二次谐波。这些结果证明了在Nd 3 + 掺杂的结晶粉末RL中由于非线性光学效应而产生的第一个多波长辐射源。与基于染料的RL相反,由于增益介质的耐用性强,该多波长光源可用于光子器件。

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