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Reliable low-cost fabrication of low-loss $Al_2O_3:Er^{3+}$ waveguides with 5.4-dB optical gain

机译:可靠的低成本制造低损耗$ al_2O_3:Er ^ {3 +} $波导,光学增益为5.4 dB

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摘要

A reliable and reproducible deposition process for the fabrication of $Al_2O_3$ waveguides with losses as low as 0.1 dB/cm has been developed. The thin films are grown at ~ 5 nm/min deposition rate and exhibit excellent thickness uniformity within 1% over 50times50 mm2 area and no detectable $OH^{-}$ incorporation. For applications of the $Al_2O_3$ films in compact, integrated optical devices, a high-quality channel waveguide fabrication process is utilized. Planar and channel propagation losses as low as 0.1 and 0.2 dB/cm, respectively, are demonstrated. For the development of active integrated optical functions, the implementation of rare-earth-ion doping is investigated by cosputtering of erbium during the $Al_2O_3$ layer growth. Dopant levels between 0.2-5times $1020 cm^{-3}$ are studied. At $Er^{3+}$ concentrations of interest for optical amplification, a lifetime of the 4I13/2 level as long as 7 ms is measured. Gain measurements over 6.4-cm propagation length in a 700-nm-thick $Al_2O_3:Er^{3+}$ channel waveguide result in net optical gain over a 41-nm-wide wavelength range between 1526-1567 nm with a maximum of 5.4 dB at 1533 nm
机译:已经开发出一种可靠且可重现的沉积工艺,用于制造损耗低至0.1 dB / cm的$ Al_2O_3 $波导。薄膜以〜5 nm / min的沉积速率生长,在50 x 50 mm2的面积上,厚度均匀性在1%以内,并且没有可检测到的结合。对于$ Al_2O_3 $膜在紧凑的集成光学器件中的应用,采用了高质量的通道波导制造工艺。平面和通道的传播损耗分别低至0.1和0.2 dB / cm。为了开发有源集成光学功能,通过在$ Al_2O_3 $层生长期间共溅射co来研究稀土离子掺杂的实现。研究了0.2-5×1020 cm ^ {-3} $之间的掺杂水平。在用于光学放大的$ Er ^ {3 +} $浓度下,测量到的4I13 / 2电平的寿命长达7 ms。在700 nm厚的$ Al_2O_3:Er ^ {3 +} $通道波导中,在6.4 cm传播长度上进行增益测量可得出1526-1567 nm之间41 nm宽波长范围内的净光学增益,最大值为1533 nm时为5.4 dB

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