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1.
面对100 Gb/s光纤传输系统性能监测需求,自主研制完成高速线性光采样模拟前端。其内部由1个被动锁模光纤激光器产生脉宽为2 ps、重复频率为96.25 MHz的采样光脉冲,待测偏振复用四相移键控(PDM-QPSK)信号和采样光脉冲进入光混频器后完成偏振相位分集探测,利用模拟带宽为400 MHz的平衡探测器完成光电转换后,将4路模拟信号传入主机进行数字化处理,获得高速光信号时域分析结果。通过优化设计,实现被动锁模光纤激光器的脉冲功率、中心波长、重复频率稳定输出。利用商用128 Gb/s PDM-QPSK信号对工程样机和安捷伦调制信号分析仪N4391A展开对比测试,测试结果表明工程样机可获得相同的时域参数分析结果。  相似文献   

2.
亚皮秒级时间分辨率的光取样示波器实验样机   总被引:1,自引:0,他引:1  
刘元山  张建国  唐定康  赵卫 《光学学报》2012,32(1):107002-83
利用自行开发的高稳定、低抖动和重复频率可调的“σ”型被动锁模光纤激光器作为高性能光学取样源,与待测的80 Gb/s光脉冲信号同时输入到100 m高非线性光纤中,通过四波混频效应实现了对被测光信号的全光采样。然后利用自行开发的数字信号处理与计算机图形显示软件,精确地重现了被测试的基于RZ码型的80 Gb/s光脉冲信号波形图。同时,还利用该光学取样示波器实验样机系统对重复频率为10 GHz、脉宽为1.8 ps的商用半导体主动锁模激光器的输出波形进行测量,所显示的脉冲宽度值为2.0 ps。这表明开发出的实验样机系统的时间分辨率优于900 fs。  相似文献   

3.
全光纤超短脉冲掺Yb3+光纤环形激光器   总被引:3,自引:0,他引:3       下载免费PDF全文
讨论了自启动被动锁模掺Yb3+光纤环形激光器产生短脉冲的机理,并研制出全光纤结构超短脉冲掺Yb3+光纤环形激光器.采用两个976nm半导体激光器级联抽运作为抽运源,高掺杂浓度掺Yb3+光纤作为增益介质,利用光纤的非线性偏振旋转效应,得到自启动、十分稳定的ps量级锁模光脉冲.激光器锁模阈值功率260mW,输出功率25mW,锁模光脉冲中心波长1056nm,3dB带宽11.7nm,重复频率20MHz.与其他结构光纤激光器相比,这种全光纤结构具有更高的效率和更好的稳定性.  相似文献   

4.
讨论了自启动被动锁模掺Yb3+光纤环形激光器产生短脉冲的机理,并研制出全光纤结构超短脉冲掺Yb3+光纤环形激光器.采用两个976nm半导体激光器级联抽运作为抽运源,高掺杂浓度掺Yb3+光纤作为增益介质,利用光纤的非线性偏振旋转效应,得到自启动、十分稳定的ps量级锁模光脉冲.激光器锁模阈值功率260mW,输出功率25mW,锁模光脉冲中心波长1056nm,3dB带宽11.7nm,重复频率20MHz.与其他结构光纤激光器相比,这种全光纤结构具有更高的效率和更好的稳定性. 关键词: 环形光纤激光器 3+光纤')" href="#">高掺杂浓度掺Yb3+光纤 自启动 被动锁模  相似文献   

5.
303MHz高重复频率掺Er光纤飞秒激光器   总被引:1,自引:0,他引:1       下载免费PDF全文
刘欢  巩马理  曹士英  林百科  方占军 《物理学报》2015,64(11):114210-114210
高重复频率掺Er光纤飞秒激光器在光学频率梳、超高速光学采样等领域具有很重要的作用. 本文采用非线性偏振旋转锁模机理, 在掺Er光纤飞秒激光器中实现了重复频率为303 MHz的锁模脉冲输出. 通过优化腔内色散, 激光器腔内色散在零色散附近偏负值, 锁模后工作在展宽脉冲锁模状态. 在817 mW抽运功率下, 激光器在连续光状态下可以输出125 mW的平均功率, 在锁模状态下可以输出69 mW的平均功率, 脉冲宽度为90 fs. 当抽运功率处于700-817 mW时, 激光器可以实现自启动锁模. 激光器重复频率在5 h内的漂移量为30 Hz.  相似文献   

6.
从广义非线性薛定谔锁模方程出发,运用数值方法分别研究了泵浦光功率和非线性饱和吸收体对飞秒被动锁模光纤激光器工作特性的影响,并得到了激光器在基阶脉冲重复频率下稳态输出的最高输入泵浦功率和其对应的非线性饱和吸收体稳定工作区间。该研究结果为进一步优化设计最高泵浦功率、非线性饱和吸收体开关以及提高被动锁模光纤激光器的稳定工作性能都具有指导意义。  相似文献   

7.
GHz重复频率飞秒激光具有高单纵模功率和高采样速率等优点,在科学前沿和工业加工等领域具有重要的应用价值.受限于锁模原理和泵浦源的可用功率, GHz重复频率克尔透镜锁模激光器的平均输出功率通常仅为数十到百毫瓦量级,限制了其直接应用.基于此,本文报道了利用高功率单模光纤激光器泵浦的GHz重复频率高功率克尔透镜锁模飞秒激光器.通过合理的腔模设计,构建了四镜环形腔结构,使晶体中激光模式可以和整形后的泵浦光形成良好匹配,以利于软孔克尔透镜锁模的实现.在8 W的泵浦功率下,首次在Yb:CaYAlO4激光器中实现了GHz重复频率的亚百飞秒高功率锁模运转,平均输出功率为2.1 W,重复频率为1.8 GHz,脉冲宽度为88 fs,对应峰值功率大于10 kW.该实验结果表明Yb:CaYAlO4晶体具有产生GHz重复频率高功率飞秒激光的潜力,高功率短脉宽GHz飞秒激光器可为光学频率梳和微加工等领域提供优质光源.  相似文献   

8.
介绍了一种全正色散宽光谱被动锁模掺镱光纤激光器,利用非线性偏振旋转技术实现全正色散掺镱光纤激光器的被动锁模.当泵浦功率输出为500mW时,激光脉冲输出功率大于139mW,重复频率约为28.1MHz,脉冲宽度为3.8ps.为了进一步研究全正色散光纤激光器的宽光谱输出特性,在腔内熔接50m单模光纤,同时去除双折射滤波片,在泵浦功率为500mW时,观察到稳定锁模单脉冲耗散孤子,光谱范围为1 005~1 140nm,输出激光脉冲最大平均功率为90mW,重复频率为3.58MHz,脉冲宽度为519ps.  相似文献   

9.
研究实现了基于半导体可饱和吸收体被动锁模的高重频全光纤掺镱皮秒脉冲激光器.种子源采取环形腔结构,当抽运功率为112mW时,获得了稳定的锁模脉冲激光,其中心波长为1 064.1nm,3dB谱宽为3.6nm,脉冲宽度为4.2ps,重复频率为19.2MHz.受限于谐振腔长度,光纤激光器重复频率很难得到进一步提高.因此设计并搭建了一种基于分束器和延时光纤的全新低损耗高重频脉冲调制器,将种子激光重复频率提高到1.2GHz.该设计有效降低了脉冲在耦合过程中的能量损耗,为提高全光纤超短脉冲激光器重复频率提供了新途径.  相似文献   

10.
利用啁啾光纤布拉格光栅作为光谱滤波器和色散控制元件来控制掺镱保偏锁模光纤激光的光谱形状和腔内色散.实验装置采用线性腔设计,利用半导体饱和吸收镜作为锁模器件,实现掺镱保偏光纤激光器的被动锁模激光输出.当泵浦功率为52 mW时,获得了脉冲宽度为4.26ps,重复频率为15.7 MHz,平均功率为9.8mW的稳定锁模脉冲激光输出.输出激光中心波长为1 030nm,3dB谱宽为7.2nm,对应理想傅里叶变换极限脉宽约为150fs.  相似文献   

11.
Feng  H.  Zhao  W.  Yan  S.  Xie  X. P. 《Laser Physics》2011,21(2):404-409
We have experimentally achieved the 8.3-ps ultra-short pulse at 10 GHz repetition rate with the time jitter as low as 590 fs in an actively mode-locked fiber ring laser. The ring-cavity laser is mode-locked by a semiconductor optical amplifier based on cross-gain modulation. The external CW source is modulated with radio frequency signal by an amplitude modulator as the external optical pulses and, then, injected into the fiber ring cavity to achieve active mode locking. Further investigating the laser output characteristics, it indicates that the linewidth of employed CW source affects properties of the generated ultra-short pulse, such as phase noise and time jitter. Ultra-short pulse at high repetition rate with low time jitter can be generated by the optimization of CW laser source.  相似文献   

12.
新型四倍频光生毫米波矢量信号调制技术   总被引:1,自引:0,他引:1  
王勇  李明安  赵强  文爱军  王方艳  尚磊 《光学学报》2012,32(9):906001-33
提出一种基于双并联马赫-曾德尔调制器(MZM)的新型四倍频光生毫米波技术,并用于矢量信号调制。传统的四倍频调制技术,由于数据信号同时调制到+2,-2阶边带上,拍频检测后两个边带上数据信号会产生相位叠加,只适用于不归零码(NRZ)等强度调制格式。提出的矢量信号调制技术将数据信号调制在一个-1阶边带上,另一个+3阶边带不携带数据,在拍频检测后幅度和相位信息被正确保留。同时,四倍频模块降低了传输过程中对电和光器件的带宽需求。理论分析和仿真结果表明,通过此方法产生的携带在60GHz载波上的6.25×108 symbol/s的四相相移键控(QPSK)信号,经过20km单模光纤传输后,误差向量幅度(EVM)损耗可以忽略。  相似文献   

13.
Real-time, ultrahigh-resolution optical coherence tomography (OCT) is demonstrated in the 1.4-1.7-microm wavelength region with a stretched-pulse, passively mode-locked, Er-doped fiber laser and highly nonlinear fiber. The fiber laser generates 100-mW, linearly chirped pulses at a 51-MHz repetition rate. The pulses are compressed and then coupled into a normally dispersive highly nonlinear fiber to generate a low-noise supercontinuum with a 180-nm FWHM bandwidth and 38 mW of output power. This light source is stable, compact, and broadband, permitting high-speed, real-time, high-resolution OCT imaging. In vivo high-speed OCT imaging of human skin with approximately 5.5-microm resolution and 99-dB sensitivity is demonstrated.  相似文献   

14.
We present a detailed investigation of the noise properties of an optical frequency comb generated from a femtosecond diode-pumped solid-state laser operating in the 1.5-??m spectral region. The stabilization of the passively mode-locked Er:Yb:glass laser oscillator, referred to as ERGO, is achieved using pump power modulation for the control of the carrier envelope offset (CEO) frequency and by adjusting the laser cavity length for the control of the repetition rate. The stability and the noise of the ERGO comb are characterized in free-running and in phase-locked operation by measuring the noise properties of the CEO, of the repetition rate, and of a comb line at 1558?nm. The comb line is analyzed from the heterodyne beat signal with a cavity-stabilized ultra-narrow-linewidth laser using a frequency discriminator. Two different schemes to stabilize the comb to a radio-frequency (RF) reference are compared. The comb properties (phase noise, frequency stability) are limited in both cases by the RF oscillator used to stabilize the repetition rate, while the contribution of the CEO is negligible at all Fourier frequencies, as a consequence of the low-noise characteristics of the CEO-beat. A?linewidth of ??150?kHz and a fractional frequency instability of 4.2×10?13 at 1?s are obtained for an optical comb line at 1558?nm. Improved performance is obtained by stabilizing the comb to an optical reference, which is a cavity-stabilized ultra-narrow linewidth laser at 1558?nm. The fractional frequency stability of 8×10?14 at 1?s, measured in preliminary experiments, is limited by the reference oscillator used in the frequency comparison.  相似文献   

15.
Pulses of 177 fs and 1035 nm, with average power of 1.2 mW, have been generated directly from a passively mode-locked Yb-doped figure-of-eight fiber laser, with a nonlinear optical loop mirror for mode-locking and pairs of diffraction gratings for intracavity dispersion compensation. To our knowledge, these are the shortest pulses ever to come from a passively mode-locked Yb-doped figure-of-eight fiber laser. This represents a 5-fold reduction in pulse duration compared with that of previously reported passively mode-locked Yb-doped figure-of-eight fiber lasers. Stable pulse trains are produced at the fundamental repetition rate of the resonator, 24.0 MHz.  相似文献   

16.
A tunable, low-repetition rate, all-normal-dispersion Yb-doped fiber laser (YDFL) that is passively mode locked based on a phase shifted long period fiber grating (PS-LPFG) is demonstrated and proposed. The mode-locking mechanism of the laser is based on nonlinear polarization evolution (NPE). Using a PS-LPFG as the spectral filter in the laser cavity, the mode-locked output wavelength can be tuned continuously and smoothly over a spectral range of 10 nm, which is the first time implementation of a tunable giant chirped pulse with all-fiber format bandpass filter in YDFL. The maximum output pulse energy is 38.9 nJ at the repetition rate of 2.499 MHz.  相似文献   

17.
In this study we present an all-normal-dispersion Yb-doped fiber laser passively mode-locked with topological insulator(Bi2Te3) saturable absorber. The saturable absorber device is fabricated by depositing Bi2Te3 on a tapered fiber through using pulsed laser deposition(PLD) technology, which can give rise to less non-saturable losses than most of the solution processing methods. Owing to the long interaction length, Bi2Te3 is not exposed to high optical power, which allows the saturable absorber device to work in a high power regime. The modulation depth of this kind of saturable absorber is measured to be 10%. By combining the saturable absorber device with Yb-doped fiber laser, a mode-locked pulse operating at a repetition rate of 19.8 MHz is achieved. The 3-d B spectral width and pulse duration are measured to be 1.245 nm and317 ps, respectively.  相似文献   

18.
Erbium-doped fiber lasers are normally actively mode-locked through amplitude modulation or phase modulation. In this paper, we demonstrate that the laser can also be mode-locked by employing polarization modulation with a polarization-dependent cavity loss. We obtain a nearly transform-limited mode-locked pulse train at 10 GHz repetition rate with timing jitter as low as 164 fs. The timing jitter is only limited by the timing jitter of the driving signal.  相似文献   

19.
We demonstrate a synchronously pumped high-gain optical parametric oscillator with feedback through a fiber, using a passively mode-locked Yb:YAG thin-disk laser as a pump source. We obtain as much as 19-W average signal power at a wavelength of 1.45 microm in 840-fs pulses and 7.8 W of idler power at 3.57 microm. The repetition rate of the pulses is 56 MHz, and the transverse beam quality of the generated signal is M2 < 1.6.  相似文献   

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