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首页> 外文期刊>Optical fiber technology >Wavelength-adjustable mode-locked Tm-Ho co-doped fiber laser from 1839 nm to 1876 nm
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Wavelength-adjustable mode-locked Tm-Ho co-doped fiber laser from 1839 nm to 1876 nm

机译:1839 nm至1876 nm的波长可调锁模Tm-Ho共掺杂光纤激光器

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摘要

We demonstrate a passively mode-locked Tm-Ho co-doped fiber laser using GaAs saturable absorber (SA). The laser has a very broad output spectrum covering from 1700 nm to 2100 nm with output wavelengths adjustable from 1839 nm to 1876 nm. The significant broadening produced by mode-locking is due to the laser-induced selfphase modulation (SPM). Results show that the peak wavelength is red-shifted with the increase of pump power. On the other hand, with the increase of the cavity length, the peak wavelength is blue-shifted. The red-shift generated by the increasing pump power may be due to the reabsorption of the short wavelength part of the laser by Ho3- ions, while the increase in the blue shift due to the increasing cavity length is due to the absorption loss in the long wavelength direction inside the optical fiber at the broad-band laser since the long wave part of the output has already entered the absorption band of the fiber material. As the length of the fiber increases, the longer wavelength side of the laser output spectrum is absorbed more, causing a blue-shift of the peak wavelength. Therefore, the laser peak wavelength can be adjusted by changing the pump power or cavity length.
机译:我们演示了使用GaAs饱和吸收器(SA)的无源锁模Tm-Ho共掺杂光纤激光器。激光器的输出光谱范围很广,从1700 nm到2100 nm,输出波长在1839 nm到1876 nm之间可调。锁模产生的显着展宽归因于激光诱导的自相位调制(SPM)。结果表明,随着泵浦功率的增加,峰值波长发生红移。另一方面,随着腔长度的增加,峰值波长蓝移。由增加的泵浦功率产生的红移可能是由于Ho3-离子对激光器的短波长部分的重吸收,而由于腔体长度增加而引起的蓝移的增加是由于激光中的吸收损失所致。由于输出的长波部分已经进入光纤材料的吸收带,因此宽带激光器在光纤内部的长波长方向已经出现。随着光纤长度的增加,激光输出光谱的较长波长侧会被更多吸收,从而导致峰值波长发生蓝移。因此,可以通过改变泵浦功率或腔长度来调节激光峰值波长。

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