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1.
采用主动锁模技术 ,在光纤环形激光器中实现了脉冲重复率为 10GHz、脉冲宽度为 10ps、线宽为 0 171nm的激光输出 ,波长调谐范围达 37 8nm。实验结果表明 ,主动锁模光纤激光器由于其输出脉冲窄、脉冲啁啾小、波长调谐方便及与光纤系统兼容等优点 ,有望成为未来超高速光通信系统中的理想光源。  相似文献   

2.
白扬博  向望华  祖鹏  张贵忠 《物理学报》2012,61(21):254-261
搭建了基于反射型体光栅和半导体可饱和吸收镜的线型腔全正色散掺镱光纤激光器,室温下实现了稳定的波长可连续调谐的连续被动锁模脉冲输出.重复频率16.42 MHz,锁模脉冲中心波长1030 nm时,脉冲光潜带宽0.32 nm,最大平均输出功率10.2 mW,单脉冲能量0.63 nJ.转动体光栅角度,利用其分光谱和选波长的特性,可使锁模脉冲的中心波长在约1011.9一1050.6 nm的范围内调谐,调谐范围约38.7 nm.实验中亦可观察到调Q锁模、二次谐波锁模、双波长和三波长输出现象.输出单波长锁模脉冲时,由于其波长可调谐的特性,该激光器可用作波分复用/光时分复用通信系统的光源和光学相干层析的调谐光源.  相似文献   

3.
用半导体激光器作调制器的双波长可调谐锁模光纤激光器   总被引:5,自引:2,他引:3  
提出一种用法布里—珀罗腔半导体激光器(F—PLD)作调制器,用线性凋啾光栅(LCFG)进行波长选择的双波长环形腔主动锁模光纤激光器。利用线性凋啾光栅在腔内的色散效应使两个波长的光脉冲通过饵光纤(EDF)时在时域上分开,从而威小了不同波长的光脉冲同时通过饵光纤时造成的竞争,因此可以在室温下获得波长间隔较小的稳定的双波长光脉冲输出。实验中成功地获得了重复频率约为2GHz,波长间隔为0.92nm的稳定双波长光脉冲,并通过调谐线性凋啾光栅中心波长的位置使激光波长可以在约3nm范围内调谐。  相似文献   

4.
陈吉武  王东宁  李志能 《光学学报》2005,25(8):077-1080
提出了一种以处于增益开关调制状态下的法布里珀罗(Fabry-Pérot)半导体激光器作为光源,采用简单的自激注入锁定方式,以生成波长可调谐的超短光脉冲的实验系统。该实验装置中,激光器的外腔包括两个串联在一起的布拉格光纤光栅,一个掺铒光纤放大器(EDFA),一个光耦合器和两个环行器,其作用是选模,以及增强并控制反馈回激光器内腔的光强。该实验系统简单而高效,在24nm的波长调谐范围内获得了边模抑制比高于40dB的单模光脉冲输出;而在1521.8nm和1550.0nm之间28.2nm的波长调谐范围内,边模抑制比高于35dB。所得到的各个单波长激光脉冲的时域半峰全宽为140~260ps,各个脉冲的光谱半峰全宽皆为0.1nm。  相似文献   

5.
如何获得频率高、相位噪声低和稳定性高的微波信号一直都是微波光子学领域的研究热点。基于此,提出一种基于受激布里渊散射(SBS)的可调谐光电振荡器(OEO)。实验中光载波和泵浦光来自同一可调谐激光器,利用泵浦光的SBS对光载波的相位调制边带进行放大,通过改变可调谐激光器的输出波长使布里渊频移量发生变化,从而实现输出微波信号的可调谐。实验结果表明,所设计的OEO可以实现频率范围为10.13~10.65 GHz的信号输出,可调谐范围为520 MHz。结构中仅使用了一个相位调制器,无偏压输入器件的引入,这使得所设计的OEO稳定性较高。在20 min内频率漂移小于1 MHz,功率变化小于1.15 dB。  相似文献   

6.
王健  孙军强  孙琪真 《光子学报》2007,36(6):986-990
基于周期极化反转铌酸锂(PPLN)光波导级联倍频和差频(SHG+DFG)的二阶非线性效应,提出并实验研究了皮秒脉冲的可调谐波长转换以及单信道到双信道的波长转换.信号光采用重复频率为40 GHz,脉宽为1.57 ps的脉冲信号.连续抽运光由光纤环形腔激光器(FRL)提供.不同于传统的SHG+DFG型波长转换,信号光固定在PPLN光波导倍频过程的准相位匹配(QPM)波长处,通过调节抽运光的波长实现了转换空闲光的可调谐输出.当使用两个抽运光时实验观察到了单信道到双信道的波长转换.  相似文献   

7.
王健  孙军强  郭永娟  李婧  孙琪真 《物理学报》2007,56(6):3251-3254
利用周期性畴反转铌酸锂光波导级联和频与差频的二阶非线性效应,提出并实验验证了一种新颖的基于无源光波导双环腔结构的可调谐全光波长转换方案,实现了皮秒脉冲从信号光波长到空闲光波长的转换.采取的脉冲信号光脉宽为1.57ps,重复频率为40GHz,抽运光和控制光由双环腔激光器提供,无需任何外界注入连续光. 关键词: 全光波长转换器 双环腔 周期性畴反转铌酸锂 级联和频与差频二阶非线性效应  相似文献   

8.
报道了两个增益开关调制的法布里-珀罗半导体激光器互注入锁定实验方案,可产生双波长可调谐光脉冲。该装置对两个结构基本相同的法布里珀罗半导体激光器做增益开关调制,产生多模光脉冲输出;然后利用两个光纤光栅作为滤波元件,通过调节可调谐光延迟线(VODL2),可使得双波长光脉冲在两个法布里-珀罗激光器之间相互注入锁定.从而在输出端得到高边模抑制比的双波长光脉冲输出。然后再通过应力作用在两个光纤光栅上以改变它们的反射波长和适当调整另一个可调谐光延迟线(VODLI)长度.可得到不同的双波长的光脉冲输出,而重复频率保持524.6MHz不变。在13.2nm调谐范围内边模抑制比高于25dB.系统稳定且波长调节方便。  相似文献   

9.
采用主动锁模光纤激光器输出的重复频率10GHz、脉宽7.97ps的脉冲作为抽运光源,无需压缩后直接抽运4.2km的普通色散位移光纤(DSF).利用色散位移光纤中自相位调制、交叉相位调制等非线性效应的联合作用,获得了20dB带宽达125nm、覆盖整个C波段、L波段和部分S波段的超连续(SC)谱。实验研究了抽运光脉冲峰值功率和抽运波长对超连续谱宽度的影响,结果表明抽运光脉冲峰值功率越高,得到的超连续谱的带宽越宽;通过对抽运波长的优化,可以实现最大程度的超连续展宽;分析了滤波器带宽对脉冲质量的影响;利用0.4nm带宽的可调谐滤波器对从超连续谱中滤出脉冲的特性进行了研究,在超连续谱的不同波长处获得了脉宽为8.90~9.80ps、时间一带宽积为0.44~0.49的稳定的窄光脉冲。  相似文献   

10.
提出了一种利用单光源光电振荡器(OEO)结构实现多波长光脉冲输出的方案.通过一个直调光源和光谱切片技术在OEO腔内可以产生不同中心波长的光脉冲和电时钟信号.腔内多个波跃通道自然形成的多环路结构可以有效地抑制信号边模.在5 GHz频率的实验演示中,该系统产生了脉宽约10 ps,抖动1 ps的单波长脉冲、20 GHz(4×5 GHz)的时分复用脉冲与波/时分复用脉冲.所得到电时钟信号的相位噪声在频偏10 kHz处为-113 dBc/Hz,边模抑制比为100 dBc/HZ.  相似文献   

11.
We present a multi-wavelength mode-locked fiber ring laser incorporating a semiconductor optical amplifier (SOA) and a Fabry-Perot semiconductor optical amplifier (FP-SOA). Because the gain of the SOA is depleted by an external injection optical signal, the SOA acts as a loss modulator. The FP-SOA serves as a tunable comb filter. The presented laser source can generate 19 synchronized wavelength channels with the extinction ratio of about 21 dB, each mode-locked at 10 GHz, and mode-locked pulse width is about 40 ps. Oscillation wavelengths band can be tuned by adjusting the bias current of the SOA, and wavelength spacing also can be changed by using a tunable optical delay line (ODL) or a temperature controller. The polarization-insensitive devices ensure that the output power is rather stable. This fiber laser has potential applications in longer waveband (L-band) within the low-attenuation window.  相似文献   

12.
A stable multiwavelength mode-locked semiconductor fiber ring laser incorporating a fiber Mach-Zehnder interferometer (MZI) filter was proposed and experimentally demonstrated. A semiconductor optical amplifier (SOA) serves as an optically controlled mode-locking element due to gain exhaustion caused by external injected optical pulses. Another SOA severs as a constant-gain medium. A fiber MZI filter with a temperature control is incorporated into the fiber ring cavity to acquire a stable and tunable multiwavelength oscillation. Twelve wavelengths are synchronously mode-locked at 10 GHz, pulse width of mode-locked pulse are about 30 ps. Proposed multiwavelength mode-locked semiconductor fiber ring laser has some distinct advantages, such as simple and compact structure, easy integration, convenient tuning, good stability, potential high repetition rate operating, which has potential application in the future WDM communication system.  相似文献   

13.
We present an actively mode-locked fiber ring laser that uses a single active semiconductor optical amplifier device to provide both gain and gain modulation from an external optical pulse train. The laser source generated 4.3-ps pulses at 20 GHz over a 16-nm tuning range and is stable against environmental changes and simple to build.  相似文献   

14.
超短光脉冲源是光时分复用(OTDM)系统中的关键器件.提出了一种基于单端半导体光放大器(SOA)的注入型主动锁模光纤激光器产生超短光脉冲的方案,建立了该方案的理论模型.实验实现了高消光比稳定的重复频率10—40GHz皮秒级光脉冲的输出,输出波长在30nm范围内连续可调. 关键词: 超短光脉冲 单端半导体光放大器 主动锁模  相似文献   

15.
8字形腔波长可调谐锁模脉冲光纤激光器   总被引:4,自引:4,他引:0  
采用非线性光纤环形镜加脉冲锁模技术及可调谐光纤光栅滤波器,对8字形腔被动锁模掺铒光纤激光器进行了波长可调谐输出的实验研究.在EDFA抽运光功率一定的情况下,通过调节偏振控制器和可调谐光纤光栅滤波器,获得了光谱稳定、重复频率1.1 MHz、输出功率起伏小于0.8 dBm、中心波长在1 548~1 570 nm内连续可调的短脉冲输出.该激光器可实现自启动锁模,且长时间稳定工作无需任何调整.  相似文献   

16.
A simple actively mode-locked fiber ring laser is proposed and successfully demonstrated to generate dual-wavelength picosecond pulses with close wavelength spacing using one Bragg grating in standard single-mode fiber. The proposed laser can be made to operate in stable dual-wavelength at room temperature, due to the birefringence characteristic of the FBG induced by transverse strain. Transverse strain loading on the FBG allows the wavelength spacing to be controlled. Generation of stable dual-wavelength pulses with a pulsewidth of 212–234 ps and a tunable wavelength separation from 0.2 to 0.44 nm at a pulse rate of 1.05 GHz was demonstrated.  相似文献   

17.
Synchronized mode-locking of monolithic mode-locked diode lasers has been demonstrated by injecting the light output from a master monolithic mode-locked diode laser. The master diode laser is a 10 GHZ hybridly mode-locked two section InGaASP quantum well laser. The slave lasers are a 10 GHz two section laser which is similar to the master laser, and a 20 GHz three section colliding pulse mode-locking laser. Both the slave lasers were greatly stabilized at 10 GHz frequency by a synchronous mode-locking mechanism under the injection of master laser pulses.  相似文献   

18.
Synchronization of a 40 GHz quantum-dash mode-locked (ML) Fabry-Perot laser diode with optically injected pulse streams is experimentally studied. Injected signals consist of nonmodulated and modulated trains of 1.6 ps pulses at various repetition rates, ranging from 10 to 160 GHz and 10 to 160 Gbps, respectively. Subharmonic, fundamental, and harmonic synchronization of the ML laser allows retrieval of stable 40 GHz clock pulses featuring a width of 1.8 ps. Frequency components at 10 and 20 GHz do not create any amplitude modulation on the recovered 40 GHz clock pulses when injecting signals at 10 and 20 GHz/Gbps. In addition, external synchronization of the laser with pulse streams at 80 and 160 GHz/Gbps is sustained despite the absence of significant components at or below 40 GHz.  相似文献   

19.
An actively mode-locked fiber ring laser based on cross-gain modulation (XGM) in a semiconductor optical amplifier (SOA) is demonstrated to operate stably with a simple configuration. By forward injecting an easily-generated external pulse train, the mode-locked fiber laser can generate an optical-pulse sequence with pulsewidth about 6 ps and average output power about 7.9 mW. The output pulses show an ultra-low RMS jitter about 70.7 fs measured by a RF spectrum analyzer. The use of the proposed forward-injection configuration can realize the repetition-rate tunability from 1 to 15 GHz for the generated optical-pulse sequences. By employing a wavelength-tunable optical band-pass filter in the laser cavity, the operation wavelength of the designed SOA-based actively mode-locked fiber laser can be tuned continuously in a wide span between 1528 and 1565 nm. The parameters of external-injection optical pulses are studied experimentally to optimize the mode-locked fiber laser.  相似文献   

20.
We demonstrate a method for all-optical, tunable pulse repetition-rate multiplication of a mode-locked laser based on spectral line-by-line control. In particular, two-to-five-times repetition-rate multiplication of a 9 GHz source is achieved with very high fidelity.  相似文献   

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