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Investigation of Gain in Bismuth Doped Fibre Considering ASE under 830 nm Pump

机译:830 nm泵浦下考虑ASE的铋掺杂光纤增益研究。

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In this study, effect of amplified spontaneous emission (ASE) on gain characteristics of bismuth doped fibre (BDF) is investigated at 830 nm pump wavelength. Finding the efficient length of the fibre and suitable pumping conditions are examined. Using BDF up to 15 m of length it is observed that the pump power does not affect the gain much after saturation of gain; but increases both, forward and backward ASE. However, reduced effect of ASE can be found from using a larger pump power. For BDF of 5 m length under 830 nm pump, the gain difference is fluctuated due to the effect of ASE until 120 mW of pump power, and then it jumps up. Besides, in presence of ASE the gain difference moves up until 120 mW of pump power for the BDF length of 10 m and 15 m, and then it moves downward. Hence, it is suitable to use 10 m length of fibre with pump power of 300 mW; the 5 m of fibre length cannot be used because of an upward gain difference due to the effect of ASE with increasing pump power. For all the cases, signal power increases ASE and that hampers the gain to be declined. Lastly, the gain performance of BDF is compared and found much smaller than that of erbium doped fibre (EDF).
机译:在这项研究中,在830 nm泵浦波长下研究了放大的自发发射(ASE)对掺铋光纤(BDF)增益特性的影响。寻找光纤的有效长度和合适的泵送条件。使用长达15 m的BDF,可以观察到在增益饱和后,泵浦功率对增益的影响不大。但同时增加向前和向后的ASE。但是,使用较大的泵浦功率会发现ASE的效果降低。对于830 nm泵浦下5 m长的BDF,由于ASE的影响,增益差会波动,直到120 mW的泵浦功率,然后它会跳升。此外,在存在ASE的情况下,对于10 m和15 m的BDF长度,增益差会上升直到120 mW的泵浦功率,然后才下降。因此,适合使用10 m长的光纤,泵浦功率为300 mW。由于ASE随泵浦功率的增加而产生的向上增益差异,因此无法使用5 m的光纤长度。在所有情况下,信号功率都会增加ASE并阻碍增益下降。最后,比较了BDF的增益性能,发现它比掺than光纤(EDF)小得多。

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