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Room temperature 90° phase-matching in zirconium and magnesium co-doped lithium niobate crystals

机译:锆和镁共掺杂铌酸锂晶体的室温90°相匹配

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摘要

Laser has been widely used in many aspects, by now it is difficult to get each frequency that we want, and frequency conversion is an effective way to obtain different frequency laser through a nonlinear optical crystal. MgO-doped LiNbO3 (Mg:LN) crystal has usually been used for second harmonic generation (SHG) through temperature-matching configuration with a stove, till now a room temperature 90° phase-matching is still lacking. Here we find that the SHG of Nd:YAG laser is achieved at 26.1?°C while the optical damage resistance is higher than 6.5?MW/cm2 in the ZrO2 and MgO co-doped LiNbO3 (Zr,Mg:LN) crystal. Moreover, the monotonic decrease of phase-matching temperature is firstly found with the increase of doping concentration. These unusual properties may be attributed to the formation of $${{ f{Mg}}}_{{ f{Li}}}^{{ oldsymbol{+}}}$$ Mg Li + + $${{ f{Zr}}}_{{ f{Nb}}}^{{ oldsymbol{-}}}$$ Zr Nb ? defect pairs. Our work suggests that Zr,Mg:LN crystal may be an attractive candidate for nonlinear optical applications.
机译:激光已经在许多方面得到了广泛的应用,目前很难获得我们想要的每个频率,而变频是通过非线性光学晶体获得不同频率激光的有效途径。掺有MgO的LiNbO3(Mg:LN)晶体通常通过炉子的温度匹配配置用于二次谐波生成(SHG),直到现在仍缺乏室温90°的相位匹配。在这里,我们发现在ZrO2和MgO共掺杂的LiNbO3(Zr,Mg:LN)晶体中,Nd:YAG激光器的SHG在26.1?C时达到,而光学损伤抗性高于6.5?MW / cm2。此外,首先发现随着掺杂浓度的增加,相匹配温度单调下降。这些不寻常的性质可能归因于$$ {{f {Mg}}} _ {{f {Li}}} ^ {{oldsymbol {+}}} $$ Mg Li + + $$ {{f { Zr}}} _ {{f {Nb}}} ^ {{oldsymbol {-}}} $$ Zr Nb吗?缺陷对。我们的工作表明Zr,Mg:LN晶体对于非线性光学应用可能是一个有吸引力的候选者。

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