Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, School of Physics and Telecommunication Engineering, South China Normal University, Guangzhou 510006, China.
Phys Chem Chem Phys. 2023 Apr 26;25(16):11350-11355. doi: 10.1039/d3cp00685a.
Materials with large optical nonlinearity are highly desired for various applications such as all-optical signal processing and storage. Recently, indium tin oxide (ITO) has been found to possess strong optical nonlinearity in the spectral region where its permittivity vanishes. Here, we demonstrate that ITO/Ag/ITO trilayer coatings, deposited by magnetron sputtering with high-temperature heat treatment, can significantly enhance the nonlinear response in their effective epsilon-near-zero (ENZ) regions. The obtained results show that the carrier concentrations of our trilayer samples can reach 7.25 × 10 cm, and the ENZ region can shift to the spectrum close to the visible range. In the ENZ spectral region, the ITO/Ag/ITO samples exhibit enhanced nonlinear refractive indices as large as 2.397 × 10 m W, over 27 times larger than that of an individual ITO layer. Such a nonlinear optical response is well described using a two-temperature model. Our findings provide a new paradigm for developing nonlinear optical devices for applications requiring low power.
具有大光学非线性的材料在各种应用中非常需要,例如全光信号处理和存储。最近,在介电常数为零的光谱区域发现了氧化铟锡(ITO)具有很强的光学非线性。在这里,我们证明了通过磁控溅射沉积并经过高温热处理的 ITO/Ag/ITO 三层涂层可以显著增强其有效近零介电常数(ENZ)区域的非线性响应。获得的结果表明,我们的三层样品的载流子浓度可以达到 7.25×10cm,并且 ENZ 区域可以转移到接近可见光谱的范围。在 ENZ 光谱区域,ITO/Ag/ITO 样品表现出增强的非线性折射率高达 2.397×10mW,比单个 ITO 层大 27 倍以上。这种非线性光学响应可以很好地用双温模型来描述。我们的发现为开发需要低功率的非线性光学器件提供了新的范例。