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Diode Pumped Monolithic Unidirectional Nonplanar Single-Frequency Ring Laser 被引量:1
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作者 吴克瑛 赵长明 +5 位作者 史俊峰 魏光辉 刘安汉 崔连荣 朱震 洪冬梅 《Journal of Beijing Institute of Technology》 EI CAS 2001年第2期175-179,共5页
Diode pumped monolithic nonplanar ring laser has been developed, yielding single frequency laser and has the advantages of compactness, reliability and high efficiency. Its principles are given in detail and a monolit... Diode pumped monolithic nonplanar ring laser has been developed, yielding single frequency laser and has the advantages of compactness, reliability and high efficiency. Its principles are given in detail and a monolithic nonplanar ring laser is designed. As a result, a laser of hundreds milliwatts cw single frequency output was built up, placed in a magnetic field and pumped by LD. The optical conversion efficiency was more than 15% and the slope efficiency more than 30%. The laser beam had a good quality, with M 2 about 1 2. 展开更多
关键词 single-frequency diode pumped solid state laser
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A Single-Frequency Linearly Polarized Fiber Laser Using a Newly Developed Heavily Tm3+-Doped Germanate Glass Fiber at 1.95 μm 被引量:8
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作者 杨麒 徐善辉 +5 位作者 李灿 杨昌盛 冯洲明 肖瑜 黄湘 杨中民 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第9期62-65,共4页
A compact linearly polarized, low-noise, narrow-linewidth, single-frequency fiber laser at 1950nm is demonstrated. This compact fiber laser is based on a 21-mm-long homemade Tm3+-doped germanate glass fiber. Over 100... A compact linearly polarized, low-noise, narrow-linewidth, single-frequency fiber laser at 1950nm is demonstrated. This compact fiber laser is based on a 21-mm-long homemade Tm3+-doped germanate glass fiber. Over 100-mW stable continuous-wave single transverse and longitudinal mode lasing at 195Ohm are achieved. The measured relative intensity noise is less than -135dB/Hz at frequencies over 5 MHz. The signal-to-noise ratio of the laser is larger than 72dB, and the laser linewidth is less than 6kHz, while the obtained linear polarization extinction ratio is higher than 22 dB. 展开更多
关键词 FBG Doped Germanate Glass Fiber at 1.95 DBR kHz RIN A single-frequency Linearly Polarized Fiber Laser Using a Newly Developed Heavily Tm
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Simultaneously Suppressing Low-Frequency and Relaxation Oscillation Intensity Noise in a DBR Single-Frequency Phosphate Fiber Laser 被引量:3
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作者 肖瑜 李灿 +4 位作者 徐善辉 冯洲明 杨昌盛 赵齐来 杨中民 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第6期73-76,共4页
Effective multiple optoelectronic feedback circuits for simultaneously suppressing low-frequency and relaxation oscillation intensity noise in a single-frequency phosphate fiber laser are demonstrated. The forward tra... Effective multiple optoelectronic feedback circuits for simultaneously suppressing low-frequency and relaxation oscillation intensity noise in a single-frequency phosphate fiber laser are demonstrated. The forward transfer function, which relates the laser output intensity to the pump modulations, is measured and analyzed. A custom two-path feedback system operating at different frequency bands is designed to adjust the pump current directly. The relative intensity noise is decreased by 20dB from 0.2 to 5kHz and over lOdB from 5 to lOkHz. The relaxation oscillation peak is suppressed by 22dB. In addition, a long term (24h) laser instability of less than 0.05% is achieved. 展开更多
关键词 kHz Simultaneously Suppressing Low-Frequency and Relaxation Oscillation Intensity Noise in a DBR single-frequency Phosphate Fiber Laser DBR RIN ROF
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Low noise,continuous-wave single-frequency 1.5-μm laser generated by a singly resonant optical parametric oscillator 被引量:3
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作者 刘建丽 刘勤 +2 位作者 李宏 李鹏 张宽收 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第11期312-316,共5页
We report a low noise continuous-wave (CW) single-frequency 1.5-μm laser source obtained by a singly resonant optical parametric oscillator (SRO) based on periodically poled lithium niobate (PPLN). The SRO was ... We report a low noise continuous-wave (CW) single-frequency 1.5-μm laser source obtained by a singly resonant optical parametric oscillator (SRO) based on periodically poled lithium niobate (PPLN). The SRO was pumped by a CW single-frequency Nd:YVO4 laser at 1.06μm. The 1.02 W of CW single-frequency signal laser at 1.5 μm was obtained at pump power of 6 W. At the output power of around 0.75 W, the power stability was better than ±l.5% and no mode-hopping was observed in 30 min and frequency stability was better than 8.5 MHz in 1 min. The signal wavelength could be tuned from 1.57 to 1.59 μm by varying the PPLN temperature. The 1.5-μm laser exhibits low noise characteristics, the intensity noise of the laser reaches the shot noise limit (SNL) at an analysis frequency of 4 MHz and the phase noise is less than 1 dB above the SNL at analysis frequencies above 10 MHz. 展开更多
关键词 singly resonant optical parametric oscillator 1.5-μm laser single-frequency operation low noise
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A 3-kHz Er:YAG single-frequency laser with a‘triple-reflection’configuration on a piezoelectric actuator 被引量:2
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作者 Shuai Huang Qing Wang +4 位作者 Meng Zhang Chaoyong Chen Kaixin Wang Mingwei Gao Chunqing Gao 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第8期281-285,共5页
A novel Er:YAG laser system operating at 1645 nm with high pulse-repetition-frequency(PRF)of kHz level is demonstrated.A ring cavity with double gain medium end-pumped by two fiber lasers is utilized to obtain high pu... A novel Er:YAG laser system operating at 1645 nm with high pulse-repetition-frequency(PRF)of kHz level is demonstrated.A ring cavity with double gain medium end-pumped by two fiber lasers is utilized to obtain high pulse energy.A novel‘triple-reflection’configuration on a piezoelectric actuator(PZT)is adopted to achieve high-repetition-rate at 3-kHz operation with the ramp-fire locking method.Single frequency pulses with maximum average power of 18.3 W at 3 kHz are obtained,and the pulse duration time is 318 ns.The full line width at half maximum(FWHM)of the pulses measured by the heterodyne technique is 1.71 MHz at 3 kHz.To the best of our knowledge,this is the highest PRF single-frequency laser pulses achieved based Er:YAG gain medium. 展开更多
关键词 ER:YAG injection-seeded single-frequency high pulse-repetition-frequency
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Stable continuous-wave single-frequency intracavity frequency-doubled laser with intensity noise suppressed in audio frequency region 被引量:1
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作者 Ying-Hao Gao Yuan-Ji Li +1 位作者 Jin-Xia Feng Kuan-Shou Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第9期197-202,共6页
We demonstrated a continuous wave(cw) single-frequency intracavity frequency-doubled Nd:YVO_4/LBO laser with 532 nm output of 7.5 W and 1.06 μm output of 3.1 W, and low intensity noise in audio frequency region.To su... We demonstrated a continuous wave(cw) single-frequency intracavity frequency-doubled Nd:YVO_4/LBO laser with 532 nm output of 7.5 W and 1.06 μm output of 3.1 W, and low intensity noise in audio frequency region.To suppress the intensity noise of the high power 532 nm laser, a laser frequency locking system and a feedback loop based on a Mach-Zehnder interferometer were designed and used.The influences of the frequency stabilization and the crucial parameters of the MZI, such as the power splitting ratio of the beam splitters and the locking state of the MZI, on the intensity noise of the 532 nm laser were investigated in detail.After the experimental optimizations, the laser intensity noise in the frequency region from 0.4 kHz to 10 kHz was significantly suppressed. 展开更多
关键词 continuous wave single-frequency INTRACAVITY frequency-doubled LASER noise SUPPRESSION power stabilization audio FREQUENCY
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On ionosphere-delay processing methods for single-frequency precise-point positioning 被引量:1
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作者 Tu Rui Zhang Qin Huang Guanwen Zhao Hong 《Geodesy and Geodynamics》 2011年第1期71-76,共6页
In single-frequency precise-point positioning of a satellite,ionosphere delay is one of the most important factors impacting the accuracy. Because of the instability of the ionosphere and uncertainty of its physical p... In single-frequency precise-point positioning of a satellite,ionosphere delay is one of the most important factors impacting the accuracy. Because of the instability of the ionosphere and uncertainty of its physical properties, the positioning accuracy is seriously limited when using a precision-limited model for correction. In order to reduce the error, we propose to introduce some ionosphere parameter for real-time ionosphere-delay estimation by applying various mapping functions. Through calculation with data from the IGS( International GPS Service) tracking station and comparison among results of using several different models and mapping functions, the feasibility and effectiveness of the new method are verified. 展开更多
关键词 single-frequency precise-point positioning ionosphere delay model correction mapping function parameter estimation
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A 330-W single-frequency retrievable multi-tone monolithic fiber amplifier 被引量:1
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作者 王小林 周朴 +2 位作者 冷进勇 杜文博 许晓军 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第4期274-280,共7页
A single-frequency retrievable phase modulated multi-tone fiber amplifier is presented in theory and demonstrated in experiment. A multi-tone seed laser generated by a sine wave phase modulated single-frequency laser ... A single-frequency retrievable phase modulated multi-tone fiber amplifier is presented in theory and demonstrated in experiment. A multi-tone seed laser generated by a sine wave phase modulated single-frequency laser is employed for stimulated Brillouin scattering suppression in an all-fiber amplifier. A demodulation signal which is π phase shifted with respect to the modulation signal is used to retrieve the single-frequency laser from the multi-tone laser. In experiment, we first optimize the all-fiber master-oscillator power-amplifier. With this amplifier, we demonstrate a single-frequency retrievable multi-tone laser with 330-W output when driven by the multi-tone seed, while the ultimate output power is only 130 W when driven by the single-frequency laser. Then, we carry out an experiment for retrieving the single-frequency laser from the amplified multi-tone laser. Results indicate that the single-frequency laser can be retrieved with a sideband suppression of more than 20 dB. Retrieving an even higher power single-frequency laser is possible if a high power demodulator is available. 展开更多
关键词 single-frequency laser multi-tone amplifier phase modulation and demodulation
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An Efficient Single-Frequency Yb-Doped All-Fiber MOPA Laser at 1064.3 nm
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作者 康进 陆宝乐 +6 位作者 齐新元 冯晓强 陈浩伟 江曼 王洋 付盼 白晋涛 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第12期54-57,共4页
An efficient narrow=linewidth single-frequency (SF) Yb-doped all-fiber master oscillator power amplifier (MOPA) laser operating at 1064.3 nm is demonstrated experimentally. A ring cavity SF fiber laser is used as ... An efficient narrow=linewidth single-frequency (SF) Yb-doped all-fiber master oscillator power amplifier (MOPA) laser operating at 1064.3 nm is demonstrated experimentally. A ring cavity SF fiber laser is used as the seed source for the MOPA system and the Yb-doped fibers are employed as the gain medium or the saturable absorber. The SF operation is observed to be stable without mode hopping. The highest output power of 266 mW is obtained under the 400row pump power with the corresponding slope efficiency of 66.2-. The Hnewidth of the amplified output laser is approximately I kHz and its optical signal-to-noise ratio is over 45 dB. 展开更多
关键词 MOPA as be SF is Yb An Efficient single-frequency Yb-Doped All-Fiber MOPA Laser at 1064.3 nm
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Stochastic Analysis of Low-Cost Single-Frequency GPS Receivers 被引量:1
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作者 Mohamed Elsayed Elsobeiey 《Positioning》 2016年第3期91-100,共11页
Typically, dual-frequency geodetic grade GNSS receivers are utilized for positioning applications that require high accuracy. Single-frequency high grade receivers can be used to minimize the expenses of such dual-fre... Typically, dual-frequency geodetic grade GNSS receivers are utilized for positioning applications that require high accuracy. Single-frequency high grade receivers can be used to minimize the expenses of such dual-frequency receivers. However, user has to consider the resultant positioning accuracy. Since the evolution of low-cost single-frequency (LCSF) receivers is typically cheaper than single-frequency high grade receivers, it is possible to obtain comparable positioning accuracy if the corresponding observables are accurately modelled. In this paper, two LCSF GPS receivers are used to form short baseline. Raw GPS measurements are recorded for several consecutive days. The collected data are used to develop the stochastic model of GPS observables from such receivers. Different functions are tested to determine the best fitting model which is found to be 3 parameters exponential decay function. The new developed model is used to process different data sets and the results are compared against the traditional model. Both results from the newly developed and the traditional models are compared with the reference solution obtained from dual-frequency receiver. It is shown that the newly developed model improves the root-mean-square of the estimated horizontal coordinates by about 10% and improves the root-mean-square of the up component by about 39%. 展开更多
关键词 single-frequency Receiver Stochastic Analysis Precise Point Positioning
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Single-Frequency Matching Pursuits Based Time-of-Flight Measurement in Viscoacoustic Medium
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作者 沈祥立 沈毅 +2 位作者 冯乃章 金晶 孙明健 《Transactions of Tianjin University》 EI CAS 2011年第5期356-361,共6页
Broadband ultrasound signals will produce distortion in viscoacoustic medium, which may influence the accuracy of time-of-flight (TOF) measurement. Under the condition of single-frequency acoustic source, the wave pro... Broadband ultrasound signals will produce distortion in viscoacoustic medium, which may influence the accuracy of time-of-flight (TOF) measurement. Under the condition of single-frequency acoustic source, the wave propagation process in viscoacoustic medium was analyzed and an approximate solution of the wave propagation was given. Instances of broadband ultrasound were analyzed and simulated based on the single-frequency results. A single-frequency matching pursuits (SFMP) algorithm was then introduced to solve the waveform distortion problem. Time-frequency decomposition was applied to extracting the single-frequency compositions from broadband ultrasound signals, and then these compositions were sent to the matching pursuits (MP) algorithm for calculating the TOF parameters. Compared with the broadband signals, the shapes of extracted single-frequency signals change more slightly as distance and attenuation coefficient increase. The residuals of SFMP were far less than those of MP algorithm. Experimental results show that the SFMP algorithm is able to eliminate waveform distortion of broadband ultrasound in viscoacoustic medium, which helps improve the accuracy of TOF measurement. 展开更多
关键词 matching pursuit single-frequency TIME-OF-FLIGHT ultrasound absorption VISCOSITY
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Single-frequency distributed Bragg reflector Tm:YAG ceramic derived all-glass fiber laser at 1.95 μm
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作者 Guo-Quan Qian Min-Bo Wu +5 位作者 Guo-Wu Tang Min Sun Dong-Dan Chen Zhi-Bin Zhang Hui Luo Qi Qian 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第12期253-257,共5页
A 135 mW single-frequency distributed Bragg reflector fiber laser at 1.95μm was obtained based on a Tm:YAG ceramic-derived all-glass fiber.The fiber laser achieved an optical signal-to-noise ratio of~77 d B.Moreover,... A 135 mW single-frequency distributed Bragg reflector fiber laser at 1.95μm was obtained based on a Tm:YAG ceramic-derived all-glass fiber.The fiber laser achieved an optical signal-to-noise ratio of~77 d B.Moreover,the threshold and linewidth of the single-frequency laser were measured to be 15.4 mW and 4.5 kHz,respectively.In addition,the measured relative intensity noise was less than-140 d B·Hz^(-1)at frequencies of over 10 MHz.The results show that the as-drawn Tm:YAG ceramic-derived all-glass fiber is highly promising for~2μm single-frequency fiber laser applications. 展开更多
关键词 all-glass fiber single-frequency 2μm fiber laser Tm:YAG ceramic derived
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Development of an injection-seeded single-frequency laser by using the phase modulated technique
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作者 Shu-Tao Dai Hong-Chun Wu +4 位作者 Fei Shi Jing Deng Yan Ge Wen Weng Wen-Xiong Lin 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第5期270-273,共4页
An injection-seeded single-frequency Q-switched Nd:YAG laser is accomplished by using a phase modulated rampfire technique. A RbTiOPO4(RTP) electro-optic crystal is selected for effective optical path length modula... An injection-seeded single-frequency Q-switched Nd:YAG laser is accomplished by using a phase modulated rampfire technique. A RbTiOPO4(RTP) electro-optic crystal is selected for effective optical path length modulation of the slave self-filtering unstable resonator. This single-frequency laser is capable of producing 50 m J pulse energy at 1 Hz repetition rate with a pulse width of 16 ns. The standard deviation of laser pulse intensity for consecutive 100 shots from the mean pulse intensity is less than 1.05%. A spectral linewidth of less than 0.5 pm with a frequency jitter of about 14 fm over30 min is obtained. 展开更多
关键词 single-frequency Q-switched Nd:YAG laser injection seeding phase modulation self-filtering unstable resonator (SFUR)
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Influence on the Lifetime of ^(87)Rb Bose-Einstein Condensation for Far-Detuning Single-Frequency Lasers with Different Phase Noises
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作者 Peng Peng Liang-hui Huang +3 位作者 Dong-hao Li Peng-jun Wang Zeng-ming Meng Jing Zhang 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第6期24-27,共4页
We study the influence of the phase noises of far detuning single frequency lasers on the lifetime of Bose-Einstein condensation(BEC)of^(87)Rb in an optical dipole trap.As a comparison,we shine a continuous-wave s... We study the influence of the phase noises of far detuning single frequency lasers on the lifetime of Bose-Einstein condensation(BEC)of^(87)Rb in an optical dipole trap.As a comparison,we shine a continuous-wave singlefrequency Ti:sapphire laser,an external-cavity diode laser and a phase-locked diode laser on BEC.We measure the heating and lifetime of BEC in two different hyperfine states:|F=2,m_F=2〉and|F=1,m_F=1〉.Due to the narrow linewidth and small phase noise,the continuous-wave single-frequency Ti:sapphire laser has less influence on the lifetime of^(87)Rb BEC than the external-cavity diode laser.To reduce the phase noise of the external-cavity diode laser,we use an optical phase-locked loop for the external-cavity diode laser to be locked on a Ti:sapphire laser.The lifetime of BEC is increased when applfying the phase-Jocked diode laser in contrast with the external-cavity diode laser. 展开更多
关键词 Influence on the Lifetime of Rb Bose-Einstein Condensation for Far-Detuning single-frequency Lasers with Different Phase Noises BEC
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Long-Pulse Single-Frequency All-Fiber Amplifier
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作者 Kuiyan Song Jingdao Yang Kun Zhang 《Journal of Applied Mathematics and Physics》 2023年第12期4153-4160,共8页
In this paper, we report a high power long-pulse single-frequency all-fiber amplifier at 1064 nm with near-diffraction-limited beam quality based on a polarization-maintaining tapered Yb-doped fiber (T-YDF). By applyi... In this paper, we report a high power long-pulse single-frequency all-fiber amplifier at 1064 nm with near-diffraction-limited beam quality based on a polarization-maintaining tapered Yb-doped fiber (T-YDF). By applying square wave pulse modulation to the diodes, with a frequency of 50 Hz and a pulse width of 668 μs, the peak power of the output laser reached 257 W with an average power of 8.65 W, linewidth of 10.6 kHz and M<sup>2</sup> < 1.5. . 展开更多
关键词 Long-Pulse single-frequency Fiber Laser Stimulated Brillouin Scattering
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Single-frequency fiber laser at 1440 nm based on a high gain coefficient bismuth-doped fiber
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作者 Jinmin Tian Yafei Wang +6 位作者 Mengting Guo Fan Wang Lei Zhang Meng Wang Xin Li Chunlei Yu Lili Hu 《Chinese Optics Letters》 2025年第3期79-84,共6页
In this Letter,a homemade bismuth-doped germane silica fiber(BGSF)with a high gain coefficient is fabricated.Based on this fiber,a single-frequency fiber laser(SFFL)operating at 1440 nm is successfully realized.A ring... In this Letter,a homemade bismuth-doped germane silica fiber(BGSF)with a high gain coefficient is fabricated.Based on this fiber,a single-frequency fiber laser(SFFL)operating at 1440 nm is successfully realized.A ring cavity with a short BGSF of 10 m and two cascaded sub-ring cavities ensures the single-longitudinal-mode(SLM)operation.The maximum SLM laser output power of about 6 mW is obtained with the optical signal-to-noise ratio(OSNR)of more than 75 dB.The linewidth of the stable SLM laser is about 745 Hz,measured by the delayed self-heterodyne method.To the best of our knowledge,this is the first SFFL operating at 1440 nm based on the bismuth-doped fiber(BDF),demonstrating the great potential of BDF in expanding the operating band of SFFL. 展开更多
关键词 bismuth-doped fiber fiber laser single-frequency laser
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Single-frequency narrow-linewidth fiber laser based on whispering gallery resonators and dynamic population gratings
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作者 Ziyun Wang Fangxing Zhang +2 位作者 Ziyu Lei Jiwen Cui Jiubin Tan 《Chinese Optics Letters》 2025年第4期44-48,共5页
Whispering gallery mode resonators(WGMRs)are used as excellent optical feedback components of narrow-linewidth fiber lasers,applied from distributed fiber sensing to optical fiber communication.However,WGMRs lead to o... Whispering gallery mode resonators(WGMRs)are used as excellent optical feedback components of narrow-linewidth fiber lasers,applied from distributed fiber sensing to optical fiber communication.However,WGMRs lead to output of a few microwatts and serious multi-modes in lasers.In this Letter,we fabricated the specially designed WGMR with an overcoupling structure,and its quality(Q)factor was over 10^(9).It improved laser output power significantly.Based on that,dynamic population gratings were applied successfully in the laser.Finally,a single-frequency WGMR fiber laser was realized.Its linewidth was less than 1.07 kHz,its output power was over 0.107 mW,and its spectral signal-to-noise ratio(SNR)was nearly 50 dB.Our research offers a new scheme of a single-frequency narrow-linewidth WGMR fiber laser. 展开更多
关键词 whispering gallery resonator single-frequency narrow-linewidth fiber laser dynamic population grating
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All-fiber delivery of 100 W single-frequency laser through 100 m anti-resonant hollow-core fiber without stimulated Brillouin scattering
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作者 Shoufei Gao Wenxiang Zha +4 位作者 Yujun Feng Zhixi Liang Yizhi Sun Xiaobo Yang Yingying Wang 《High Power Laser Science and Engineering》 CSCD 2024年第6期277-282,共6页
The flexible delivery of single-frequency lasers is far more challenging than that of conventional lasers due to the onset of stimulated Brillouin scattering (SBS).Here we present the successful delivery of 100 W sing... The flexible delivery of single-frequency lasers is far more challenging than that of conventional lasers due to the onset of stimulated Brillouin scattering (SBS).Here we present the successful delivery of 100 W single-frequency laser power through 100 m of anti-resonant hollow-core fiber (AR-HCF) in an all-fiber configuration,with the absence of SBS.By employing a custom-designed AR-HCF with a mode-field diameter matching that of a large-mode-area panda fiber the system achieves high coupling efficiency without the need for free-space components or fiber post-processing.The AR-HCF attains a transmission efficiency of 92%,delivering an output power of 100.3 W with a beam quality factor(M^(2)) of 1.22.The absence of SBS is confirmed through monitoring backward light,which shows no increase in intensity This all-fiber architecture ensures high stability,compactness and efficiency,potentially expanding the application scope of single-frequency lasers in high-precision metrology,optical communication,light detection and ranging systems gravitational wave detection and other advanced applications. 展开更多
关键词 all-fiber delivery hollow-core fiber POWER single-frequency laser
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Over 100 mW linearly polarized single-frequency fiber laser based on Er:YAG crystal-derived silica fiber
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作者 Xinyue Li Jianxiang Wen +4 位作者 Yanhua Luo Wei Chen Fufei Pang Gang-Ding Peng Tingyun Wang 《Chinese Optics Letters》 CSCD 2024年第11期73-79,共7页
The realization of single-frequency fiber lasers requires high-gain media. In this work, an Er:YAG crystal-derived silica fiber(EYDSF) was prepared using the melt-in-tube method, whose gain coefficient was up to 2.11 ... The realization of single-frequency fiber lasers requires high-gain media. In this work, an Er:YAG crystal-derived silica fiber(EYDSF) was prepared using the melt-in-tube method, whose gain coefficient was up to 2.11 dB/cm using a pump power of 1480 nm. A linearly polarized single-frequency fiber laser was constructed based on a 2-cm-long EYDSF. The optical-to-optical conversion efficiency was 27.0%. A fiber mirror was used at the end of the cavity to reflect the residual pump, which can be absorbed by the EYDSF to further increase the output power. The maximum output power and the slope efficiency of the proposed laser were over 100 mW and up to 22.4%, respectively. To the best of our knowledge, it has the highest output power and the largest slope efficiency, compared with the previous single-frequency fiber lasers based on EYDSFs. In addition, the laser had good polarization and noise performance with a polarization extinction ratio of 25 dB and a relative intensity noise of <-139 dB/Hz. The performance of the proposed fiber laser demonstrates its great potential as a seed source for coherent optical communications, laser combining systems, and other fields. 展开更多
关键词 linear polarization single-frequency fiber laser Er:YAG crystal-derived silica fiber.
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Laser diode pumped high-energy single-frequency Er:YAG laser with hundreds of nanoseconds pulse duration 被引量:8
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作者 Shanghua Li Qing Wang +3 位作者 Rui Song Fangfang Hou Mingwei Gao Chunqing Gao 《Chinese Optics Letters》 SCIE EI CAS CSCD 2020年第3期40-44,共5页
We demonstrated a high-energy single-frequency erbium-doped yttrium aluminum garnet(Er:YAG)laser.With1470 nm laser diodes(LDs)as pumping sources,single-frequency laser pulses with energy of 28.6 m J,21.6 m J,and 15.0 ... We demonstrated a high-energy single-frequency erbium-doped yttrium aluminum garnet(Er:YAG)laser.With1470 nm laser diodes(LDs)as pumping sources,single-frequency laser pulses with energy of 28.6 m J,21.6 m J,and 15.0 m J are obtained at pulse repetition frequency of 200 Hz,300 Hz,and 500 Hz,respectively.As far as we know,this is the highest single-frequency pulse energy with the Er:YAG gain medium.With the ring cavity design,pulse duration is maintained at hundreds of nanoseconds.This high-energy single-frequency laser with hundreds of nanoseconds pulse duration is a prospective laser source for light detection and ranging applications. 展开更多
关键词 ER:YAG INJECTION-LOCKING single-frequency high ENERGY
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