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Model results of Er-Yb double clad fiber amplifier

机译:ER-YB双包层光纤放大器的模型结果

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We present model calculations of gain at 1550 nm for Er-Yb double clad amplifiers as a function of pump power, pump wavelength, signal input power, and fiber length. The absorption coefficient of Yb varies ( by a factor of ~ 5) with the pump wavelength in the range of 910 to 990 nm. However, semiconductor lasers may be available only at certain wavelengths. Thus it is important to calculate optical gain and amplified output power as a function of pump wavelength. The calculation shows that significant optical gain and amplified output power can be obtained even if the pump laser wavelength is not at the peak absorption wavelength. The gain decreases with increasing input signal. We show that a high power Er-Yb co-doped double-clad fiber amplifier also exhibits high gain for Yb transition near 1060 nm. This is not unexpected since the input pump causes population inversion in Yb. More than 100 W of amplified power can be obtained using 24m long fiber with 300 W of total pump power by using side-pumping method. Side pumping increases the efficiency over end pumping for high output power.
机译:我们为ER-YB双包装放大器提供了1550nm的增益模型计算,作为泵电源,泵波长,信号输入功率和光纤长度。 Yb的吸收系数在910至990nm的范围内变化(〜5倍)。然而,半导体激光器可以仅在某些波长处可用。因此,重要的是计算光学增益和放大的输出功率作为泵波长的函数。该计算表明,即使泵激光波长在峰值吸收波长处,也可以获得显着的光学增益和放大的输出功率。随着输入信号的增加,增益降低。我们表明,高功率ER-YB共掺杂双包层光纤放大器还在1060nm附近显示YB过渡的高增益。由于输入泵导致YB中的人口反转,这不是出口意外。通过使用侧泵方法,可以使用24米长的纤维获得超过100W的放大电源,通过侧泵方法使用300W的总泵功率。侧泵送为高输出功率的终端泵送增加了效率。

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