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Wavelength-Tunable Single Frequency Ytterbium-Doped Fiber Laser with Loop Mirror Filter 被引量:1
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作者 陆宝乐 黄圣鸿 +3 位作者 尹默娟 陈浩伟 任兆玉 白晋涛 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第4期54-57,共4页
By using a loop mirror filter, a novel wavelength-tunable single-frequency ytterbium-doped fiber laser is developed to select single longitudinal modes in a linear cavity. The output wavelength could be tuned 2.4 nm i... By using a loop mirror filter, a novel wavelength-tunable single-frequency ytterbium-doped fiber laser is developed to select single longitudinal modes in a linear cavity. The output wavelength could be tuned 2.4 nm intervals range from 1063.3 to 1065.Tnrn with the temperature change of the fiber Bragg grating. The maximum output power could reach 32 m W while the pump power increases to 120 m W. The corresponding optical-to-optical conversion efficiency is 26.7% and the slope efficiency is 33.9%, respectively. The output power fluctuation is below 2%, and its highest signal-to-noise ratio is 60 dB. 展开更多
关键词 wavelength-tunable Single Frequency Ytterbium-Doped Fiber Laser with Loop Mirror Filter FBG FSR
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Improved Performance of a Wavelength-Tunable Arrayed Waveguide Grating in Silicon on Insulator
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作者 袁配 张晓光 +3 位作者 安俊明 殷鹏刚 王玥 吴远大 《Chinese Physics Letters》 SCIE CAS CSCD 2019年第5期40-43,共4页
The improved performance of a wavelength-tunable arrayed waveguide grating (AWG) is demonstrated, including the crosstalk, insertion loss and the wavelength tuning efficiency. A reduced impact of the fabrication proce... The improved performance of a wavelength-tunable arrayed waveguide grating (AWG) is demonstrated, including the crosstalk, insertion loss and the wavelength tuning efficiency. A reduced impact of the fabrication process on the AWG is achieved by the design of bi-level tapers. The wavelength tuning of the AWG is achieved according to the thermo-optic effect of silicon, and uniform heating of the silicon waveguide layer is achieved by optimizing the heater design. The fabricated AWG shows a minimum crosstalk of 16 dB, a maximum insertion loss of 3.91 dB and a wavelength tuning efficiency of 8.92 nm/W, exhibiting a ~8 dB improvement of crosstalk, ~2.1 dB improvement of insertion loss and ~5 nm/W improvement of wavelength tuning efficiency, compared to our previous reported results. 展开更多
关键词 Improved Performance of a wavelength-tunable Arrayed Waveguide Grating in Silicon on INSULATOR AWG
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Wavelength-Tunable Rectangular Pulses Generated from All-Fiber Mode-Locked Laser Based on Semiconductor Saturable Absorber Mirror
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作者 王兆坤 邹峰 +2 位作者 王子薇 杜松涛 周军 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第9期60-63,共4页
The wavelength-tunable rectangular mode-locking operation is demonstrated in an all-fiber laser based on semi- conductor saturable absorber mirror. As the dissipative soliton resonance signature, the pulse duration va... The wavelength-tunable rectangular mode-locking operation is demonstrated in an all-fiber laser based on semi- conductor saturable absorber mirror. As the dissipative soliton resonance signature, the pulse duration varies from 5SOps to 2.1 ns as a function o~ the increasing pump power. Correspondingly, the maximum pulse energy is 9.11 n3. Moreover, it is found that the wavelength tunable operation with a range of approximately 10 nm could be obtained by properly adjusting the polarization controllers. The characteristics of the rectangular pulses at different wavelengths are similar to each other. The demonstration of the wavelength tunable rectangular pulses would be beneficial to some applications for many fields such as spectroscopy and sensing research. 展开更多
关键词 DSR in of mode wavelength-tunable Rectangular Pulses Generated from All-Fiber Mode-Locked Laser Based on Semiconductor Saturable Absorber Mirror from on
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Experimental Investigation of Wavelength-Tunable All-Normal-Dispersion Yb-Doped Mode-Locked Fiber Lasers:Compression and Amplification
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作者 肖晓晟 华弋 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第2期63-65,共3页
Wavelength-tunable ultrashort pulse source with high energy is highly desired for a lot of applications. The wavelength-tunable all-normal-dispersion (ANDi) mode-locked fiber laser, which can be compressed easily an... Wavelength-tunable ultrashort pulse source with high energy is highly desired for a lot of applications. The wavelength-tunable all-normal-dispersion (ANDi) mode-locked fiber laser, which can be compressed easily and amplified by an all-fiber structure, is a promising seed of such a source with compact structures. The pulse compression and amplification at different center wavelengths (from 1026 to 1058nm) of the tunable ANDi Yb- doped mode-locked fiber lasers that we previously proposed are experimentally investigated in this work. It is found that, for different wavelengths, the duration and chirp of the direct output pulse from the oscillator vary considerably, however, the duration of compressed pulse fluctuates less. For the amplification process, due to the unf/at gain spectrum of Yb-doped fiber, the gain at a short wavelength is larger than that at a long wavelength. Consequently, the trends of spectrum distortions induced by the amplification process are different for different wavelengths. These results and analyses will be helpful for the design of a high-energy and wavelength-tunable ultrashort pulse source based on an ANDi seed. 展开更多
关键词 LENGTH In Yb Experimental Investigation of wavelength-tunable All-Normal-Dispersion Yb-Doped Mode-Locked Fiber Lasers:Compression and Amplification
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All-fiber, wavelength-tunable ultrafast praseodymium fiber laser 被引量:1
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作者 H.Ahmad S.N.Aidit +1 位作者 S.I.Ooi Z.C.Tiu 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第12期56-60,共5页
The interest in tunable ultrafast fiber lasers operating in the 1.3 μm region has seen a significant increase due to rising demands for bandwidth as well as the zero-dispersion characteristic of silica fibers in this... The interest in tunable ultrafast fiber lasers operating in the 1.3 μm region has seen a significant increase due to rising demands for bandwidth as well as the zero-dispersion characteristic of silica fibers in this wavelength region. In this work, a tunable mode-locked praseodymium-doped fluoride fiber(PDFF) laser using single-walled carbon nanotubes as a saturable absorber is demonstrated. The mode-locked pulses are generated at a central wavelength of 1302 nm with a pulse repetition rate of 5.92 MHz and pulse width of 1.13 ps. The tunability of the mode-locked PDFF laser covers a tuning range of 11 nm. 展开更多
关键词 ALL-FIBER wavelength-tunable ultrafast praseodymium fiber laser SWCNTs
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Low-threshold wavelength-tunable ultraviolet vertical-cavity surface-emitting lasers from 376 to 409 nm 被引量:1
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作者 Yang Mei Tian-Rui Yang +4 位作者 Wei Ou Zhong-Ming Zheng Hao Long Lei-Ying Ying Bao-Ping Zhang 《Fundamental Research》 CAS 2021年第6期684-690,共7页
Optically pumped wavelength-tunable vertical-cavity surface-emitting lasers(VCSELs)operating in the ultraviolet A(UVA)spectrum were demonstrated.The VCSELs feature double dielectric distributed brag reflectors and a w... Optically pumped wavelength-tunable vertical-cavity surface-emitting lasers(VCSELs)operating in the ultraviolet A(UVA)spectrum were demonstrated.The VCSELs feature double dielectric distributed brag reflectors and a wedge-shaped cavity fabricated using the substrate transfer technique and laser lift off,resulting in a graded cavity length in one device.A resonant period gain structure is used in the InGaN/GaN multi-quantum well active region to enhance the coupling between the cavity mode field and the active layers.The optical field inside the cavity is modulated by the cavity length;thus,tunable lasing at different wavelengths is realized at different points of a single VCSEL chip.The lasing wavelength extends from 376 to 409 nm,covering most of the UVA band below the band gap of GaN.The threshold pumping power density of the UVA VCSELs at different wavelengths ranges from 383 to 466 kW/cm^(2),which is among the lowest values for ultraviolet(UV)VCSELs.This study is promising for the development of small-footprint,power-efficient UV light sources. 展开更多
关键词 UVA VCSELs wavelength-tunable Wedge-shaped cavity Resonant period gain
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Single stain hyperspectral imaging for accurate fungal pathogens identification and quantification 被引量:2
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作者 Yongqiang Zhang Kunxing Liu +6 位作者 Jingkun Yu Haifeng Chen Rui Fu Siqi Zhu Zhenqiang Chen Shuangpeng Wang Siyu Lu 《Nano Research》 SCIE EI CSCD 2022年第7期6399-6406,共8页
The most widely used method of identification of microbial morphology and structure is microscopy,but it can be difficult to distinguish between pathogens with a similar appearance.Existing fluorescent staining method... The most widely used method of identification of microbial morphology and structure is microscopy,but it can be difficult to distinguish between pathogens with a similar appearance.Existing fluorescent staining methods require a combination of a variety of fluorescent materials to meet this demand.In this study,unique concentration-dependent fluorescent carbon dots(CDs)were synthesized for the identification and quantification of pathogens.The emission wavelength of the CDs could be tuned spanning the full visible region by virtue of aggregation-induced narrowing of bandgaps.This tunable emission wavelength of the specific concentration response to diverse microbes can be used to distinguish microorganisms with a similar appearance,even in a same genus.A hyperspectral microscopy system was demonstrated to distinguish Aspergillus flavus and A.fumigatus based on the results above.The identification accuracy of the two similar-looking pathogens can be close to 100%,and the relative proportions and spatial distributions can also be profiled from the mixture of the pathogens.This technique can provide a solution to the fast detection of microorganisms and is potentially applicable to a wide range of problems in areas such as healthcare,food preparation,biotechnology,and health emergency. 展开更多
关键词 carbon dots concentration-dependent wavelength-tunable hyperspectral imaging pathogens rapid detection MACHINELEARNING
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Sb2Te3 topological insulator for 52 nm wideband tunable Yb-doped passively Q-switched fiber laser
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作者 Tao WANG Qiang YU +6 位作者 Kun GUO Xinyao SHI Xuefen KAN Yijun XU Jian WU Kai ZHANG Pu ZHOU 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2021年第3期287-295,共9页
Topological insulator Sb2Te3 has the advantage of broadband saturable absorption from the visible to the infrared bands.Herein,the two-dimensional material Sb2Te3 saturable absorber(SA)of the topological insulator fam... Topological insulator Sb2Te3 has the advantage of broadband saturable absorption from the visible to the infrared bands.Herein,the two-dimensional material Sb2Te3 saturable absorber(SA)of the topological insulator family was first applied experimentally in a wideband tunable passively Q-switched Yb-doped fiber laser.High-quality Sb2Te3 crystals were synthesized by the flux zone method.The Sb2Te3 SA with fewer layers was further prepared via a modified mechanical exfoliation procedure.Meanwhile,stable wavelength-tunable passive Q-switching pulse operation was obtained in a Yb-doped fiber ring cavity based on the Sb2Te3 SA,where the central wavelength can be continuously tuned from 1040.89 to 1092.85 nm.Results suggest that Sb2Te3 has wideband saturable absorption properties,and that the tunable pulse laser can provide a convenient and simple source for practical applications. 展开更多
关键词 Topological insulator Sb2Te3 Fiber laser Passive Q-switching laser wavelength-tunable laser
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