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Rapid, k-space linear wavelength scanning laser source based on recirculating frequency shifter

机译:基于循环移频器的快速k空间线性波长扫描激光源

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摘要

We propose and successfully demonstrate a k-space linear and self-clocked wavelength scanning fiber laser source based on recirculating frequency shifting (RFS). The RFS is realized with a high speed electro-optic dual parallel Mach-Zehnder modulator operating at the state of carrier suppressed single sideband modulation. A gated short pulse is injected into an amplified RFS loop to generate the wavelength scanning pulse train. We find that the accumulation of in-band amplified spontaneous emission (ASE) noise over multiple scanning periods will saturate the erbium-doped fiber amplifier and impede the amplification to the pulse signal in the RFS loop. To overcome the degradation of temporal signal due to the accumulation of ASE noise over multiple scanning periods, we insert a modulated optical switch into the RFS loop to completely attenuate the in-band ASE noise at the end of each scanning period. The signal to noise ratio of the temporal pulsed signal is greatly enhanced. K-space linear and self-clocked wavelength scanning fiber laser sources in 6.1 nm/7.2 nm scanning range with 20 GHz/30 GHz frequency shifting are successfully demonstrated.
机译:我们提出并成功地演示了基于循环频移(RFS)的k空间线性和自计时的波长扫描光纤激光源。 RFS通过在载波抑制的单边带调制状态下运行的高速电光双并行马赫曾德尔调制器来实现。选通的短脉冲被注入到放大的RFS环路中以生成波长扫描脉冲序列。我们发现在多个扫描周期内带内放大的自发发射(ASE)噪声的积累将使掺the光纤放大器饱和,并阻碍RFS环路中对脉冲信号的放大。为了克服由于ASE噪声在多个扫描周期内积累而造成的时间信号降级,我们将调制的光开关插入RFS环路中,以在每个扫描周期结束时完全衰减带内ASE噪声。时间脉冲信号的信噪比大大提高。成功展示了在6.1 nm / 7.2 nm扫描范围内具有20 GHz / 30 GHz频移的K空间线性和自时钟波长扫描光纤激光源。

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