首页> 外文会议>SPIE Conference on Nonlinear Frequency Generation and Conversion: Materials and Devices >Flat broadband supercontinuum generation in a short length of highly nonlinear fiber pumped by a femtosecond carbon-nanotube based passively mode-locked erbium-doped fiber laser.
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Flat broadband supercontinuum generation in a short length of highly nonlinear fiber pumped by a femtosecond carbon-nanotube based passively mode-locked erbium-doped fiber laser.

机译:平坦宽带超连续发电在短长的高度非线性纤维中,由飞秒碳 - 纳米管基的被动模式锁定铒掺杂光纤激光器泵送。

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Highly nonlinear fibers (HNLF) is one of the most preferred optical nonlinear mediums for efficient supercontinuum (SC) generation due to its property of good laser beam confinement in a small core area and high nonlinearity. Till date, SC generation in HNLF is explored using very long length fibers, typically sub-kilometre. In this work, for the first time to our knowledge, the physical length of the HNLF used to generate broad SC is reduced by considering the nonlinearity length. This is also first-time demonstration of a very flat and broad SC generation in a short-length of HNLF using carbon-nanotube (CNT) based passively mode-locked erbium-doped femtosecond fiber laser. The CNT based mode-locking has achieved a pulse width of 620 fs with a repetition rate of 18 MHz at a centre wavelength of 1565 nm. A single stage amplification is employed on the mode-locked pulses and the spectral evolution of pulse inside the HNLF at various input power levels is studied. A flat and broad SC covering a bandwidth of ~1500 nm ranging from 1000 nm to 2500 nm has been demonstrated successfully. The spectrum throughout the ~1500 nm band is smooth with a flatness of <5 dB. The effect of input pulse polarization on SC spectrum smoothness has been studied and maintained proper polarization state to achieve spectral flatness of <5 dB.
机译:高度非线性光纤(HNLF)是最优选的光学非线性介质为高效率超连续(SC)产生的一个由于其在小芯面积和高非线性好激光束约束的属性。直到日期,SC代在HNLF使用非常长的长度的纤维,通常子公里探讨。在这项工作中,首次就我们所知,该HNLF的物理长度用来产生广泛SC是考虑到非线性长度减少。这也是在使用碳纳米管(CNT)的基于被动锁模掺铒飞秒光纤激光器HNLF的短长度的非常平坦,宽幅的SC代的首次证明。该CNT基于锁模已在1565纳米的中心波长达到620个FS 18 MHz的重复频率的脉冲宽度。的单级放大对所用锁模脉冲和在不同输入功率电平的HNLF内脉冲的谱演化进行了研究。甲平坦,宽幅的SC覆盖〜1500nm的范围从1000纳米至2500纳米的带宽已被成功地证明。整个〜1500纳米的频带中的频谱是与<5 dB的平坦度平滑。输入脉冲极化对SC频谱平滑度的影响进行了研究,并保持适当的偏振状态,以实现的<5分贝频谱平坦度。

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