首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Comparison on exfoliated graphene nano-sheets and triturated graphite nano-particles for mode-locking the Erbium-doped fibre lasers
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Comparison on exfoliated graphene nano-sheets and triturated graphite nano-particles for mode-locking the Erbium-doped fibre lasers

机译:剥落石墨烯纳米片和研磨石墨纳米粒子的剥落掺杂纤维激光器的研磨石墨纳米粒子的比较

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摘要

Comparisons on exfoliated graphene nano-sheets and triturated graphite nano-particles for mode-locking the Erbium-doped fiber lasers (EDFLs) are performed. As opposed to the graphite nano-particles obtained by physically triturating the graphite foil, the tri-layer graphene nano-sheets is obtained by electrochemically exfoliating the graphite foil. To precisely control the size dispersion and the layer number of the exfoliated graphene nano-sheet, both the bias of electrochemical exfoliation and the speed of centrifugation are optimized. Under a threshold exfoliation bias of 3 volts and a centrifugation at 1000 rpm, graphene nano-sheets with an average diameter of 100 +/- 40 nm can be obtained. The graphene nano-sheets with an area density of 15 #/mu m(2) are directly imprinted onto the end-face of a single-mode fiber made patchcord connector inside the EDFL cavity. Such electrochemically exfoliated graphene nano-sheets show comparable saturable absorption with standard single-graphene and perform the self-amplitude modulation better than physically triturated graphite nano-particles. The linear transmittance and modulation depth of the inserted graphene nano-sheets are 92.5% and 53%, respectively. Under the operation with a power gain of 21.5 dB, the EDFL can be passively mode-locked to deliver a pulsewidth of 454.5 fs with a spectral linewidth of 5.6 nm. The time-bandwidth product of 0.31 is close to the transform limit. The Kelly sideband frequency spacing of 1.34 THz is used to calculate the chirp coefficient as -0.0015.
机译:进行对剥落的石墨烯纳米片和用于模式锁定铒掺杂纤维激光器(EDFL)的研磨石墨纳米颗粒的比较。与通过物理研磨石墨箔而获得的石墨纳米颗粒相反,通过电化学剥离石墨箔来获得三层石墨烯纳米片。为了精确控制剥落的石墨烯纳米片的尺寸分散体和层数,优化了电化学剥离的偏差和离心速度。在阈值剥离偏压下,3伏的偏压和1000rpm以离心的离心,可以获得平均直径为100 +/- 40nm的石墨烯纳米片。区域密度为15#/ mu m(2)的石墨烯纳米片直接印在EDFL腔内的单模纤维制造的夹角连接器的端面上。这种电化学输出的石墨烯纳米片显示出与标准单石墨烯的相当可饱和的吸收,并且比物理研磨的石墨纳米颗粒更好地执行自振幅调节。插入的石墨烯纳米片的线性透射率和调制深度分别为92.5%和53%。在具有21.5 dB的功率增益的操作下,EDFL可以被动地锁定,以提供454.5 FS的脉冲宽度,其光谱线宽为5.6nm。 0.31的时间带宽乘积接近变换极限。 1.34 THz的凯利边带频率间距用于计算啁啾系数为-0.0015。

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