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Influence of scattering and two-photon absorption on the optical loss in GaAs-Al2O3 nonlinear waveguides measured using femtosecond pulses

机译:飞秒脉冲测量的GaAs-Al2O3非线性波导中散射和双光子吸收对光损耗的影响

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The influence of scattering and two-photon absorption on the optical loss in GaAs-Al2O3 semiconductor nonlinear waveguides has been studied using femtosecond pulses. By deploying a scattering technique, loss coefficients were evaluated over an extended wavelength range of 1.3-2.1 Μm in the near-infrared. A systematic study involving intensity and wavelength dependence of the loss revealed the presence of two-photon absorption for wavelengths below 1.6 Μm. A simple nonlinear transmission study enabled the separation of the two-photon absorption coefficient from scattering and linear absorption. The calculated two-photon absorption coefficients were ∼9-20 cm/GW.
机译:利用飞秒脉冲研究了GaAs-Al2O3半导体非线性波导中的散射和双光子吸收对光损耗的影响。通过采用散射技术,在近红外1.3-2.1微米的扩展波长范围内评估了损耗系数。涉及损耗强度和波长依赖性的系统研究表明,对于低于1.6微米的波长,存在双光子吸收。一个简单的非线性透射研究使得能够将双光子吸收系数与散射和线性吸收区分开。计算得出的双光子吸收系数为〜9-20 cm / GW。

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