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New characterization technique for femtosecond laser written waveguides in Yb/Er-codoped glass

机译:掺Yb / Er玻璃中飞秒激光写入波导的新表征技术

摘要

We have developed a procedure for the complete characterization of femtosecond-laser written Er/Yb-codoped glass waveguides. The procedure is based on precise measurements of both pump and 1.5 μm-band output powers when the waveguide is diode-laser pumped at 980 nm. The dependence of these optical powers on the input pump power is fitted to the results derived from a detailed numerical model of the propagation of the optical powers inside the waveguide. As a result of the fitting procedure the 980-nm absorption cross-section of the Yb3+ ion and the coefficients for both Yb3+ ⇒ Er 3+ non-radiative energy-transfer and Er3+ ion upconversion are obtained. Moreover, the transmission losses for both pump and signal wavelengths and the coupling losses at each waveguide end are also determined. The model takes into account that the fs-laser writing process may induce transmission losses with a spectral dependence (α(λ)) departing from the Rayleigh scattering scaling law (λ-4) and is valid both for single mode and multimode propagation. It has been tested in fs-laser written waveguides produced under non-optimal conditions in order to test the robustness of the method, providing excellent results. © 2010 IEEE.
机译:我们已经开发出了完整表征飞秒激光的Er / Yb掺杂玻璃波导的方法。该程序基于对在980 nm处以二极管激光泵浦波导的情况下泵浦和1.5μm波段输出功率的精确测量。这些光功率对输入泵浦功率的依赖性适合于从光功率在波导内部传播的详细数值模型得出的结果。作为拟合过程的结果,获得了Yb3 +离子的980 nm吸收截面以及Yb3 +⇒Er 3+非辐射能量转移和Er3 +离子上转换的系数。此外,还确定了泵浦和信号波长的传输损耗以及每个波导端的耦合损耗。该模型考虑了fs激光写入过程可能会引起传输损耗,其频谱依赖性(α(λ))偏离了瑞利散射缩放定律(λ-4),并且对于单模和多模传播均有效。为了测试该方法的鲁棒性,已经在非最佳条件下生产的fs激光写入波导中对其进行了测试,从而提供了出色的结果。 ©2010 IEEE。

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