Nonlinear optical response and application of indirect narrow-bandgap SbTe nanosheets

Enlin Cai, Linhong Hao, Shanming Li, Min Chen, Shuaiyi Zhang, Xinxing Liu, Yin Hang
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Abstract

The nonlinear optical properties of antimony telluride (SbTe) crystal with indirect narrow bandgap are investigated, which exhibits superior performance for nonlinear laser modulation in the infrared band. The nonlinear optical coefficients of SbTe nanosheets are determined to be −3.3 cm/GW, −2.3 cm/GW, −1.9 cm/GW and the modulation depths are 5.5 %, 2.0 %, 1.5 % at 400 nm, 800 nm, 1064 nm, respectively. Based on the SbTe-SA, a Yb:GdScO laser centered at 1064 nm is achieved with 633 mW maximum output power, 56 fs pulse width and 104 MHz repetition rate. The damage threshold of the SbTe nanosheets is calculated to be exceed 338 GW/cm, revealing the great potential in high-power laser modulation. This investigation marks the inaugural theoretical and experimental analysis of SbTe’s optical properties and its application in laser modulation, laying the groundwork for future research into indirect narrow-bandgap materials in laser technology.
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间接窄带隙碲化镉纳米片的非线性光学响应与应用
研究了具有间接窄带隙的碲化镉锑(SbTe)晶体的非线性光学特性,它在红外波段的非线性激光调制中表现出卓越的性能。在 400 nm、800 nm 和 1064 nm 波段,SbTe 纳米片的非线性光学系数分别为-3.3 cm/GW、-2.3 cm/GW、-1.9 cm/GW,调制深度分别为 5.5 %、2.0 %、1.5 %。在 SbTe-SA 的基础上,实现了以 1064 nm 为中心的 Yb:GdScO 激光器,其最大输出功率为 633 mW,脉冲宽度为 56 fs,重复频率为 104 MHz。根据计算,SbTe 纳米片的损伤阈值超过 338 GW/cm,揭示了高功率激光调制的巨大潜力。这项研究首次从理论和实验上分析了 SbTe 的光学特性及其在激光调制中的应用,为今后研究激光技术中的间接窄带隙材料奠定了基础。
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