Yuanfei Zhang
South China University of Technology
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Featured researches published by Yuanfei Zhang.
Optics Express | 2016
Yuning Zhang; Yuanfei Zhang; Qilai Zhao; Can Li; Changsheng Yang; Zhouming Feng; Huaqiu Deng; Enbo Zhou; Xiaogeng Xu; Kenneth K. Y. Wong; Zhongmin Yang; Shanhui Xu
An ultra-narrow linewidth full C-band tunable single-frequency linear-polarization fiber laser based on self-injection locking has been demonstrated. By the use of a tunable narrow-band fiber Fabry-Perot interferometer, the laser wavelength could be flexibly tuned from 1527 to 1563 nm with linewidths of < 700 Hz. The laser frequency noise is less than 40 dB re Hz/Hz1/2 at low frequencies (< 100 Hz) and reaches -5 dB re Hz/Hz1/2 at around 25 kHz. The measured relative intensity noise (RIN) is less than -130 dB/Hz with regard to frequencies of over 3 MHz, while the obtained linear polarization extinction ratio (LPER) is higher than 28 dB. This ultra-narrow linewidth low-noise tunable single-frequency linear-polarization fiber laser provides a promising candidate for high-order quadrature amplitude modulation (QAM) optical communication system.
Optics Express | 2016
Changsheng Yang; Dan Chen; Shanhui Xu; Huaqiu Deng; Wei Lin; Qilai Zhao; Yuanfei Zhang; Kaijun Zhou; Zhouming Feng; Qi Qian; Zhongmin Yang
Based on heavily Tm-doped germanate glass fibers (TGFs), a short all-TGF MOPA laser system with uniform core parameters in each stage was demonstrated. An 11.7 W stable single-frequency laser at 1.95 μm with an optical-to-optical conversion efficiency of 20.4% is obtained from a homemade 31-cm-long double-cladding single-mode TGF. The estimated stimulated Brillouin scattering (SBS) threshold of 980 W and the measured relative intensity noise of < -130 dB/Hz for frequencies above 2 MHz are achieved in this MOPA system. Furthermore, the prospect for further power-scaling of such short MOPA laser is considered.
Optics Express | 2016
Yuanfei Zhang; Changsheng Yang; Can Li; Zhouming Feng; Shanhui Xu; Huaqiu Deng; Zhongmin Yang
A linearly frequency-modulated, actively Q-switched, single-frequency ring fiber laser based on injection seeding from an ultra-short cavity is demonstrated at 1083 nm. A piezoelectric transducer is employed to obtain linearly frequency-modulating performance and over 1.05 GHz frequency-tuning range is achieved with a modulating frequency reaching tens of kilohertz. A maximum peak power of the stable output pulse is over 3.83 W during frequency-modulating process. This type of pulsed fiber laser provides a promising candidate for coherent LIDAR in the measurement of thermosphere.
Journal of Optics | 2015
Yuanfei Zhang; Zhouming Feng; Shanhui Xu; Shupei Mo; Changsheng Yang; Can Li; Jiulin Gan; Dongdan Chen; Zhongmin Yang
A compact frequency-modulation Q-switched single-frequency fiber laser is demonstrated at 1083 nm. The short linear resonant cavity consists of a 12 mm long homemade Yb3+-doped phosphate fiber and a pair of fiber Bragg gratings (FBGs) in which the Q-switching and the frequency excursion is achieved by a tensile-induced period modulation. Over 375 MHz frequency-tuning range is achieved with a modulation frequency varying from tens to hundreds of kilohertz. The highest peak power of the output pulse reaching 6.93 W at the repetition rate of 10 kHz is obtained.
Optics Express | 2016
Yuanfei Zhang; Changsheng Yang; Zhouming Feng; Huaqiu Deng; Mingying Peng; Zhongmin Yang; Shanhui Xu
We propose a compact dual-wavelength Q-switched single-frequency fiber laser based on a 17-mm-long home-made highly Er3+/Yb3+ co-doped phosphate fiber (EYDPF) and a semiconductor saturable absorber mirror (SESAM). The short cavity length and a polarization-maintaining fiber Bragg grating (PM-FBG) ensure that only one longitudinal mode is supported by each reflection peak. The maximum pulse energy of more than 34.5 nJ was realized with the shortest pulse duration of 110.5 ns and the Q-switched fiber laser has a repetition rate reaching over 700 kHz with a temporal synchronization of pulses at two wavelengths. Besides, the optical signal-to-noise ratio (OSNR) of larger than 64.5 dB was achieved.
Optics Express | 2017
Qilai Zhao; Yuning Zhang; Wei Lin; Zisheng Wu; Can Li; Changsheng Yang; Yuanfei Zhang; Zhouming Feng; Mingying Peng; Huaqiu Deng; Zhongmin Yang; Shanhui Xu
We investigated the frequency noise in the distributed Bragg reflector single-frequency fiber laser (DBR-SFFL) theoretically and experimentally. A complete theoretical analysis is demonstrated by considering the energy-transfer upconversion (ETU) process and establishing linkages between the frequency noise and the relative intensity noise (RIN) of the DBR-SFFL. The experimental results of the diverse DBR-SFFLs in different working conditions are in good agreement with the theoretical analyses. These investigations are beneficial to optimizing frequency noise property to promote the wide application of the DBR-SFFLs. The proposed results can be generally applicable to the short-linear-cavity SFFL with centimeters order of the cavity length.
Journal of Optics | 2016
Changsheng Yang; Shanhui Xu; Dan Chen; Yuanfei Zhang; Qilai Zhao; Can Li; Kaijun Zhou; Zhouming Feng; Jiulin Gan; Zhongmin Yang
An all-fiber Yb-doped kHz-linewidth low-noise linearly polarized single-frequency master-oscillator power-amplifier (MOPA) laser with a stable CW output power of >52 W is demonstrated. By suppressing the intensity noise of the DBR phosphate fiber oscillator, the linewidth of MOPA laser is not noticeably broadened, and an ultra-narrow linewidth of 63 dB are achieved.
Optics Express | 2017
Zhenpeng Huang; Huaqiu Deng; Changsheng Yang; Qilai Zhao; Yuanfei Zhang; Yuning Zhang; Zhouming Feng; Zhongmin Yang; Mingying Peng; Shanhui Xu
Based on a self-injection locking scheme and the nonlinear amplification effect of a semiconductor optical amplifier, a low intensity noise amplified ultrashort cavity single-frequency fiber laser at 978 nm is demonstrated with a final output power of > 230 mW and a broad temperature range of > 15 °C for single-longitudinal-mode operation. The effective cavity length of the fiber oscillator is less than 6 mm, comprising a 3.5-mm-long highly Yb3+-doped phosphate fiber and a pair of fiber Bragg gratings. For the frequency range from 1.8 to 10 MHz, the relative intensity noise close to -150 dB/Hz is achieved. The signal-to-noise ratio of > 68 dB and the laser linewidth of < 10 kHz are obtained. Such narrow linewidth low noise 978 nm laser is promising, as the high-performance pump source or the efficient blue and UV light sources after nonlinear frequency conversion.
Asia Communications and Photonics Conference 2015 (2015), paper AM1C.2 | 2015
Shanhui Xu; Yuanfei Zhang; Zhouming Feng; Changsheng Yang; Zhongmin Yang
A compact-structure frequency-modulation Q-switched single-frequency fiber laser has been demonstrated at 1.0 μm. A piezoelectric transducer which is clamped to the fiber Bragg grating is utilized to achieve the Q-switching and frequency excursion. The range of the modulation frequency of the output pulse varies from tens to hundreds of kilohertz. Hundreds-of-megahertz frequency-tuning range is achieved and the highest peak power of the output pulse reaches almost 7.0 W.
Journal of Optics | 2017
Huaqiu Deng; Dan Chen; Qilai Zhao; Changsheng Yang; Yuanfei Zhang; Yuning Zhang; Zhouming Feng; Zhongmin Yang; Shanhui Xu