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Rational design of a new chalcogenide with good infrared nonlinear optical performance: SrZnSnS4

机译:具有良好红外线非线性光学性能的新硫族化物的合理设计:Srznsns4

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A new quaternary sulfide SrZnSnS4, containing "nonlinear optical (NLO) active groups" [ZnS4](6-) and [SnS4](4-) has been designed and synthesized with the traditional high-temperature solid-state reaction method by introducing Zn and Sn after considering the cost of raw materials. As a result, the title compound has a large energy gap of 3.37 eV using the upper tangent method. In addition, the second harmonic generation (SHG) measurements indicate that it can achieve phase-matching behavior. Meanwhile, SrZnSnS4 possesses a second harmonic generation response approximately equivalent to that of LiGaS2. Theoretical calculations show that the results are in agreement with the experimental manifestation, demonstrating that the title compound is a potential IR NLO material reaching a good balance between the energy gap and SHG effect.
机译:通过引入Zn,设计并合成了含有“非线性光学(NLO)活性基团”[ZnS4](6-)和[SNS4](4-)的新季硫化物SRZNS4,并通过传统的高温固态反应方法设计和合成 考虑到原材料成本后,SN。 结果,标题化合物使用上切割方法具有3.37eV的大能隙。 另外,第二谐波生成(SHG)测量表明它可以实现相位匹配的行为。 同时,SRZNS4具有大约相当于LIGAS2的第二谐波产生响应。 理论计算表明,结果与实验表现一致,证明标题化合物是潜在的IR NLO材料,在能量隙和SHG效应之间达到良好的平衡。

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