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1.
Supercontinuum (SC) generation in a standard telecom fiber using 1 ns pulses of a 1,550-nm DFB laser amplified in a cascade of erbium and erbium/ytterbium fiber amplifiers is reported. The SC source operated at 200 kHz repetition rate and delivered up to 2 W of average output power in the band of 1,300–2,500 nm with a diffraction limited beam. For the wavelengths over 1,650 nm, the output power of 1.1 W was recorded. The spectrum was very flat with the flatness of <5 dB in the wavelength interval of 1.6–2.18 μm. To the best of our knowledge, it is the first report on W-level SC generation obtained only in a standard single-mode fiber (SMF-28) with almost the entire spectrum in the eye-safe spectral region (λ > 1.4 μm) permitted by silicate glass transparency. 相似文献
2.
Combine a section of photonic crystal fiber and a picosecond fiber laser to realize an all-fiber supercontinuum source. The
picosecond laser exhibits 20 W average output power, 14 ps pulse duration at 480MHz repetition rate. Approximately 7 W supercontinuum
with over 1100 nm spectral range is obtained with an optical-optical conversion efficiency of 34%. Further improvements for
higher average power are discussed in this paper. 相似文献
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Monolithic all-fiber mid-infrared supercontinuum source based on a step-index two-mode As_2S_3 fiber 下载免费PDF全文
《中国物理 B》2019,(6)
We demonstrate efficient supercontinuum generation extending into mid-infrared spectral range by pumping a twomode As_2S_3 fiber in the normal dispersion regime. The As_2S_3 fiber is fusion spliced to the pigtail of a near-infrared supercontinuum pump source with ultra-low splicing loss of 0.125 dB, which enables a monolithic all-fiber mid-infrared supercontinuum source. By two-mode excitation and mixed-mode cascaded stimulated Raman scattering, a supercontinuum spanning from 1.8 μm to 4.2 μm is obtained. Over 70% of the supercontinuum power is converted to wavelengths beyond2.4 μm. This is the first experimental report with respect to the multimode mid-infrared supercontinuum generation in a step-index two-mode chalcogenide fiber. 相似文献
4.
B.A. Cumberland J.C. Travers R.E. Kennedy S.V. Popov J.R. Taylor 《Optics Communications》2007,277(1):134-137
We demonstrate a uniform high spectral brightness and peak power density all-fiber supercontinuum source. The source consists of a nanosecond Ytterbium fiber laser and an optimal length PCF producing a continuum with a peak power density of 2 W/nm and less than 5 dB of spectral variation between 590 and 1500 nm. The Watt level per nm peak power density enables the use of such sources for the characterization of non-linear materials. Application of the source is demonstrated with the characterization of several periodically poled crystals. 相似文献
5.
We demonstrate low-threshold supercontinuum generated in a highly nonlinear arsenic selenide chalcogenide nanowire with tailored dispersion. The tapered submicrometer chalcogenide fiber exhibits an ultrahigh nonlinearity, n(2) approximately 1.1x10(-17) m(2)/W and an effective mode area of 0.48 mum(2), yielding an effective nonlinearity of gamma approximately 93.4 W/m, which is over 80,000 times larger than standard silica single-mode fiber at a wavelength of approximately 1550 nm. This high nonlinearity, in conjunction with the engineered anomalous dispersion, enables low-threshold soliton fission leading to large spectral broadening at a dramatically reduced peak power of several watts, corresponding to picojoule energy. 相似文献
6.
受限于短脉冲泵浦源高峰值功率和高平均功率之间的矛盾, 以及短脉冲泵浦源芯径与光子晶体光纤芯径的较大差异, 现有的短脉冲白光超连续谱光源输出在200 W左右。基于短脉冲泵浦源工作频率和脉冲宽度的调节技术、高效的模场匹配技术等, 实现了k W级全光纤短脉冲泵浦源的稳定产生, 以及短脉冲泵浦源与光子晶体光纤纤芯之间的高效耦合, 产生了平均输出功率为563 W的高功率超连续谱光源, 为目前该领域公开报道的最高功率。 相似文献
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报道了一个全光纤的高效率超连续谱产生系统,系统采用增加一段匹配光纤的办法解决增益光纤和光子晶体光纤直接熔接损耗较大的问题,并且对匹配光纤和光子晶体光纤熔接对准过程进行实时监控,使熔接损耗降到最低,从而实现了较高的全系统转换效率(76%)和较好的光束质量。实验研究了超连续光谱展宽的过程,结果显示:超连续谱展宽的初始阶段,拉曼效应和自相位调制效应起主要作用,光谱呈现长波方向展宽较多的非对称性,并出现明显的拉曼斯托克斯峰;光谱继续展宽时,满足相位匹配条件的四波混频开始起作用,拉曼效应产生的加宽光谱成分作为四波混频参量过程的泵浦,使光谱开始向长波和短波两个方向扩展。 相似文献
9.
报道了一个全光纤的高效率超连续谱产生系统,系统采用增加一段匹配光纤的办法解决增益光纤和光子晶体光纤直接熔接损耗较大的问题,并且对匹配光纤和光子晶体光纤熔接对准过程进行实时监控,使熔接损耗降到最低,从而实现了较高的全系统转换效率(76%)和较好的光束质量。实验研究了超连续光谱展宽的过程,结果显示:超连续谱展宽的初始阶段,拉曼效应和自相位调制效应起主要作用,光谱呈现长波方向展宽较多的非对称性,并出现明显的拉曼斯托克斯峰;光谱继续展宽时,满足相位匹配条件的四波混频开始起作用,拉曼效应产生的加宽光谱成分作为四波混频参量过程的泵浦,使光谱开始向长波和短波两个方向扩展。 相似文献
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An all-fiber structured supercontinuum source based on chirped pulse amplification (CPA) technology and the use of nonlinear photonic crystal fiber was constructed. By experimentally varying fiber stretcher length in CPA laser source, we can change the spectral coverage and therefore the percentage of visible light in the produced supercontinuum at output of nonlinear photonic crystal fiber, while the average supercontinuum power always keeps at watts of level. The all-fiber structured feature and the capability of changing supercontinuum spectral coverage make this CPA system a promising implement for different applications that require different broad band spectrum. 相似文献
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A monolithic visible supercontinuum(SC) source with a record average output power of 204 W and a spectrum ranging from580 nm to beyond 2400 nm is achieved in a piece of standard telecom graded-index multimode fiber(GRIN MMF) by designing the pumping system. The influence of the GRIN MMF length on the geometrical parameter instability(GPI) effect is analyzed for the first time, to the best of our knowledge, by comparing the SC spectral region dominated by the GPI effect under different fiber leng... 相似文献
15.
We experimentally demonstrate a novel erbium-doped fiber based continuous-wave (cw) supercontinuum laser. The laser has a simple ring-cavity structure incorporating an erbium-doped fiber and a highly nonlinear dispersion-shifted fiber (HNL-DSF). Differently from previously demonstrated cw supercontinuum sources based on single propagation of a strong Raman pump laser beam through a highly nonlinear fiber, erbium gain inside the cavity generates a seed light oscillation, and the oscillated light subsequently evolves into a supercontinuum by nonlinear effects such as modulation instability and stimulated Raman scattering in the HNL-DSF. High quality of the depolarized supercontinuum laser output with a spectral bandwidth larger than 250 nm is readily achieved. 相似文献
16.
报道了一种基于低非线性系数光子晶体光纤的全光纤高效率超连续谱产生系统。将光纤锁模激光器输出的脉宽5 ps、重复频率20 MHz、平均功率50 mW的脉冲,输入到15 μm的大模场光纤中进行放大,通过与两级芯径较小的短光纤模场匹配缩小输出的模场直径后,输入到20 m低非线性系数的光子晶体光纤,获得的超连续谱波长覆盖范围宽于650~1 700 nm。输入光子晶体光纤的泵浦光功率为740 mW,输出超连续光功率为670 mW,转换效率大于90%。实验研究了超连续光谱展宽的过程,从理论上进行了分析解释。 相似文献
17.
报道了一种基于低非线性系数光子晶体光纤的全光纤高效率超连续谱产生系统。将光纤锁模激光器输出的脉宽5 ps、重复频率20 MHz、平均功率50 mW的脉冲,输入到15 μm的大模场光纤中进行放大,通过与两级芯径较小的短光纤模场匹配缩小输出的模场直径后,输入到20 m低非线性系数的光子晶体光纤,获得的超连续谱波长覆盖范围宽于650~1 700 nm。输入光子晶体光纤的泵浦光功率为740 mW,输出超连续光功率为670 mW,转换效率大于90%。实验研究了超连续光谱展宽的过程,从理论上进行了分析解释。 相似文献
18.
We propose and demonstrate a low-threshold single-wavelength all-fiber laser generating cylindrical vector beams using a few-mode fiber Bragg grating. Both radially and azimuthally polarized beams have been generated with very good modal symmetry and polarization purity higher than 94%. The radially and azimuthally polarized modes can be switched by simply adjusting the polarization controllers built in the fiber laser cavity. This fiber laser operates at a single wavelength of 1053 nm with a 3 dB linewidth of less than 0.02 nm, signal-to-background ratio of more than 55 dB, and a threshold as low as 16 mW. A new method for the polarization purity measurement is also proposed. 相似文献
19.
Thulium doped fiber amplifier is a good candidate for S, and S+ band. This paper demonstrated a three pump pumping scheme for thulium doped fiber amplifier with 1050 nm co propagating pump and 1400 nm and 800 nm counter propagating pumps with a total pumping power 600 mW. This configuration yields up to 33 dB gain in 20 nm region from 1460 nm to 1480 nm, with noise figure <4 dB. To the knowledge of authors it is the highest gain achieved by thulium-doped amplifier in a single pass configuration with good power conversion efficiency. 相似文献
20.
Nd3+-doped fiber lasers at around 900 nm based on the 4F3/2→4I9/2 transition have obtained much research attention since they can be used as the laser sources for generating pure blue fiber lasers through the frequency doubling.Here,an all-fiber laser at 915 nm was realized by polarization-maintaining Nd3+-doped silica fiber.A net gain per unit length of up to 1.0 dB/cm at 915 nm was obtained from a 4.5 cm fiber,which to our best knowledge is the highest gain coefficient reported in this kind of silica fiber.The optical-to-optical conversion efficiency varies with the active fiber length and the reflectivity of the output fiber Bragg grating(FBG),presenting an optimal value of 5.3%at 5.1 cm fiber length and 70%reflectivity of the low reflection FBG.Additionally,the linear distributed Bragg reflector short cavity was constructed to explore its potential in realizing single-frequency 915 nm fiber laser.The measurement result of longitudinal-mode properties shows it is still multi-longitudinal mode laser operation with 40 mm laser cavity.These results indicate that the Nd3+-doped silica fiber could be used to realize all-fiber laser at 915 nm,which presents potential to be the seed source of high-power fiber laser. 相似文献