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Second-order optical nonlinearity in thermally poled Pyrex borosilicate glass

机译:热极化派热克斯硼硅酸盐玻璃的二阶光学非线性

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摘要

The thermal poling method was utilized to create second-order optical nonlinearity in Pyrex borosilicate glass. The distribution and amplitude of the induced nonlinearity were characterized with second harmonic microscopy. The induced optical nonlinearity was found in a thin layer around 1.9 (mu)m under the anode surface with a magnitude as high as 0.24 pm/V, comparable to that observed in fused silica samples. SEM observation of the cross-section of the poled glass region, after it had been etched in diluted hydrofluoric acid for several minutes, revealed an etched trench, approx1.8 (mu)m under the anode edge and approx0.3 (mu)m in width; while in post-annealed samples, no such etched trench could be observed. The effect of poling voltage on the magnitude of the induced nonlinearity was also studied, where the results showed that higher poling voltage resulted in higher nonlinearity with a threshold of approx0.9 kV.
机译:利用热极化方法在派热克斯硼硅酸盐玻璃中产生了二级光学非线性。用二次谐波显微镜表征了感应非线性的分布和幅度。在阳极表面下方约1.9μm的薄层中发现了诱导的光学非线性,幅度高达0.24 pm / V,与熔融石英样品中观察到的相当。在稀释的氢氟酸中蚀刻了极化玻璃区域的横截面后,用SEM观察,发现蚀刻出的沟槽在阳极边缘下方约1.8μm,约0.3μm。宽度而在退火后的样品中,没有观察到这样的蚀刻沟槽。还研究了极化电压对感应非线性幅度的影响,结果表明,较高的极化电压会导致较高的非线性,阈值约为0.9 kV。

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