基本信息
肖旭升 中国科学院西安光学精密机械研究所
电子邮件: xiaoxusheng@opt.ac.cn
通信地址: 陕西省西安市高新区新型工业园信息大道17号
邮政编码:
电子邮件: xiaoxusheng@opt.ac.cn
通信地址: 陕西省西安市高新区新型工业园信息大道17号
邮政编码:
招生信息
招生专业
070207-光学080300-光学工程
招生方向
中红外光纤器件、光纤激光器
教育背景
2012-09--2017-11 中国科学院大学 工学博士学位
工作经历
工作简历
2018-01~现在, 中国科学院西安光学精密机械研究所, 助理研究员,副研究员
社会兼职
2023-07-10-今,中国光学学会纤维光学与集成光学专业委员会委员/秘书,
专利与奖励
奖励信息
(1) 西安分院优秀青促会会员, 市地级, 2023(2) 中科院院级青促会, 院级, 2022(3) 西安光机所所级青促会, 研究所(学校), 2021
专利成果
( 1 ) 一种高功率2.8微米光纤激光放大器, 发明专利, 2022, 第 1 作者, 专利号: CN114361921A( 2 ) 一种高功率、高效率的4.3μm全光纤激光器, 发明专利, 2022, 第 1 作者, 专利号: CN114361920A( 3 ) 一种红外硫化砷玻璃的除氧提纯装置及方法, 发明专利, 2021, 第 3 作者, 专利号: 202110880361.X( 4 ) 一种低羟基氟碲酸盐红外光学玻璃及其制备方法, 发明专利, 2021, 第 5 作者, 专利号: CN113429129A( 5 ) 一种中红外光纤泵浦合束器及其制备方法, 发明专利, 2021, 第 1 作者, 专利号: CN113087385A( 6 ) 一种基于SESAM的1.7微米皮秒级超快光纤激光器, 发明专利, 2021, 第 1 作者, 专利号: CN113140955A( 7 ) 一种基于硫系增益光纤的4μm波段中红外光纤放大器, 发明专利, 2020, 第 1 作者, 专利号: CN111129926A( 8 ) 一种高功率的1.7μm全光纤激光器, 发明专利, 2021, 第 1 作者, 专利号: CN111129924B( 9 ) 一种单模光纤预制棒的制备装置及方法, 发明专利, 2021, 第 3 作者, 专利号: CN110981180B( 10 ) 一种1.7μm光纤激光器用Tm/Tb共掺石英光纤及其制备方法, 发明专利, 2019, 第 1 作者, 专利号: CN110255882A( 11 ) 一种基于掺铥石英光纤的1.7μm锁模光纤激光器, 专利授权, 2019, 第 1 作者, 专利号: CN109687269A( 12 ) 一种1.7μm光纤激光放大器, 发明专利, 2019, 第 2 作者, 专利号: CN109830880A( 13 ) 一种具有硫系玻璃芯层/碲酸盐玻璃包层的多芯复合材料光纤及其制备方法, 发明专利, 2019, 第 2 作者, 专利号: CN109678334A( 14 ) 单模双包层掺镝硫系玻璃光纤及其制备方法, 发明专利, 2018, 第 2 作者, 专利号: CN108732680A( 15 ) 一种氟碲酸盐玻璃及其制备方法, 发明专利, 2017, 第 2 作者, 专利号: CN107162413A( 16 ) 一种红外硫系磁旋光玻璃及其制备方法, 专利授权, 2017, 第 6 作者, 专利号: CN107010830A( 17 ) 一种红外玻璃制备方法及其除水装置, 发明专利, 2017, 第 3 作者, 专利号: CN107021622A( 18 ) 一种基于双向泵浦结构的1.7μm全光纤掺铥石英光纤激光器, 实用新型, 2017, 第 2 作者, 专利号: CN106299985A( 19 ) 一种瓦级1.7μm窄线宽全光纤掺铥石英光纤激光器, 实用新型, 2017, 第 2 作者, 专利号: CN106329296A( 20 ) 一种基于双向泵浦结构的1.7μm全光纤掺铥石英光纤激光器, 发明专利, 2017, 第 2 作者, 专利号: CN206116858U( 21 ) 一种瓦级1.7μm窄线宽全光纤掺铥石英光纤激光器, 发明专利, 2017, 第 2 作者, 专利号: CN206135197U( 22 ) 多孔红外硫系玻璃光纤的制备方法, 发明专利, 2015, 第 3 作者, 专利号: CN105110634A( 23 ) 1.75μm窄线宽掺铥光纤激光器, 实用新型, 2015, 第 3 作者, 专利号: CN105119135A( 24 ) 1.75μm窄线宽掺铥光纤激光器, 发明专利, 2015, 第 3 作者, 专利号: CN204793601U
出版信息
发表论文
(1) Direct-diode-pumped 10-W-level all-fiber laser at 3003 nm, optics letters, 2026, (2) 6.8 W, 3795 nm monolithic all-fiber laser, optics letters, 2026, (3) 20.2 W Monolithic 3.5 μm Fiber Laser System Using Actively Temperature-Tuned Femtosecond Laser Inscribed FBGs, Photonics Research, 2026, (4) Compact, 4-W, 2.3-μm continuous-wave all-fiber Raman laser based on fluorotellurite glass fiber, optics letters, 2025, (5) Double-periodic pulsating solitons in 2.8 μm mid-infrared fiber laser, Chaos Soliton Fract., 2025, (6) Gain-switched 3 μm dysprosium-doped fluoride fiber laser pumped at 1.7 μm, Optics and Laser Technology, 2024, (7) Modeling of 1.7-μm and 2.4-μm Dual-Wavelength Pumped 4.3-μm Dysprosium-Doped Chalcogenide Fiber Lasers, IEEE JOURNAL OF QUANTUM ELECTRONICS, 2024, (8) 10瓦级3.5μm中红外全光纤激光器研究., 中国激光, 2024, 第 1 作者(9) 中红外7×1硫化物光纤合束器的设计与制备, 光子学报, 2023, (10) Numerical and experimental investigations on the propagation property of a mid-infrared 7 × 1 multimode fiber combiner., Optics Express, 2023, (11) Gain-switched 2.8 μm fluoride fiber laser pumped at 1550 nm, Laser Physics Letters, 2023, (12) Ultra-short wavelength of 1.7 μm ultrafast Tm-doped fiber laser, Applied Physics Letters, 2023, 第 1 作者(13) Gain-switched watt-level thulium-doped fiber laser and amplifier operating at 1.7 μm, High Power Laser Science and Engineering, 2022, (14) Numerical modeling and optimization of hundred-watt-level 2.8 μm and 1.6 μm cascaded heavily-erbium-doped fluoride fiber amplifiers, Optics and Laser Technology, 2022, (15) The mutual influence between rare earth element doping and femtosecond laser-induced effects in Ga-As-Sb-S chalcogenide glass, CERAMICS INTERNATIONAL, 2021, 第 4 作者(16) Direct femtosecond laser inscription of an IR fluorotellurite fiber Bragg grating, OPTICS LETTERS, 2021, 第 3 作者(17) 过渡金属Co^2+离子掺杂ZnS硫化物纳米晶制备与中红外发光特性研究, Preparation and Mid-infrared Luminescence Properties of Transition Metal Co^2+ Doped ZnS Sulfide Nanocrystals, 光子学报, 2020, 第 4 作者(18) Cobalt and iron co-doped ZnSe nanocrystals:Mid-IR luminescence at room temperature, JOURNAL OF LUMINESCENCE, 2020, 第 3 作者(19) Structured active fiber fabrication and characterization of a chemically high-purified Dy3+-doped chalcogenide glass, JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2020, 第 1 作者(20) Retracted:Non-crystalline YVO(4)fiber (Retraction of Vol 0, Pg 1, 2019), JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2020, 第 3 作者(21) 基于下陷内包层设计的大芯径掺氟光纤表征及性能, Characterization and Properties of Large-core Fluorine-doped Fibers Based on Depressed Inner Cladding Design, 光子学报, 2019, 第 5 作者(22) Femtosecond laser ablation and photo-induced effects of AS(40)S(60), Ga0.8As39.2S60 and Ga0.8As29.2Sb10S60 chalcogenide glasses, OPTICAL MATERIALS EXPRESS, 2019, 第 3 作者(23) Mid-Infrared Emission of Transition Metal Co2+-Doped ZnSe Nanocrystals at Room Temperature via Hydrothermal Preparation, ACS APPLIED NANO MATERIALS, 2019, 第 3 作者(24) Multi-component yttrium aluminosilicate (yas) fiber prepared by melt-in-tube method for stable single-frequency laser, JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2019, 第 4 作者(25) Design and magneto-optical characteristics of Ge–Sb–S–PbI2 chalcogenide glasses with a high Verdet constant, JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2019, 第 5 作者(26) Investigation on the formation and regulation of yttrium aluminosilicate fiber driven by spontaneous element migration, CERAMICS INTERNATIONAL, 2019, 第 5 作者(27) The preparation of Yttrium Aluminosilicate (YAS) Glass Fiber with heavy doping of Tm3+ from Polycrystalline YAG ceramics, JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2018, 第 3 作者(28) Mid-infrared emissions of Dy3+ doped Ga-As-S chalcogenide glasses and fibers and their potential for a 4.2 μm fiber laser, OPTICAL MATERIALS EXPRESS, 2018, 第 4 作者(29) Mid-infrared emissions of Dy3+ doped Ga-As-S chalcogenide glasses and fibers and their potential for a 4.2 mu m fiber laser, OPTICAL MATERIALS EXPRESS, 2018, 第 2 作者(30) Theoretical Modeling of 4.3 mu m Mid-Infrared Lasing in Dy3+-Doped Chalcogenide Fiber Lasers, IEEE PHOTONICS JOURNAL, 2018, 第 1 作者(31) Improvement of the Faraday effect in Ge-S based chalcogenide glasses via gallium and lead compositional modifications, OPTICAL MATERIALS EXPRESS, 2018, 第 2 作者(32) A yttrium aluminosilicate glass fiber with graded refractive index fabricated by melt-in-tube method, JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2018, 第 3 作者(33) Synthesis and spectroscopy of high concentration dysprosium doped GeS2-Ga2S3-CdI2 chalcohalide glasses and fiber fabrication, JOURNAL OF ALLOYS AND COMPOUNDS, 2017, 第 3 作者(34) Glass-ceramic optical fiber containing Ba2TiSi2O8 nanocrystals for frequency conversion of lasers, SCIENTIFIC REPORTS, 2017, 第 2 作者(35) Effect of iodine (I2) on structural, thermal and optical properties of Ge-Sb-S chalcohalide host glasses and ones doped with Dy, JOURNAL OF NON-CRYSTALLINE SOLIDS, 2017, 第 4 作者(36) Magneto-optical effects of Ge-Ga-Sb(In)-S chalcogenide glasses with diamagnetic responses, JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2017, 第 7 作者(37) 3 W narrow-linewidth ultra-short wavelength operation near 1707 nm in thulium-doped silica fiber laser with bidirectional pumping, APPLIED PHYSICS B-LASERS AND OPTICS, 2017, 第 1 作者(38) Structural evolution study of additions of Sb2S3 and CdS into GeS2 chalcogenide glass by Raman spectroscopy, CHINESE PHYSICS B, 2017, 第 4 作者(39) High Verdet constants and diamagnetic responses of GeS2-In2S3-PbI2 chalcogenide glasses for integrated optics applications, OPTICS EXPRESS, 2017, 第 3 作者(40) 硫系玻璃磁光性能的研究进展, Research Progress of Magneto-optical Property of Chalcogenide Glasses, 材料导报, 2016, 第 6 作者(41) 高纯硫系玻璃和光纤的制备与性能研究, 第八届中国功能玻璃学术研讨会暨新型光电子材料国际论坛论文集, 2015, 第 4 作者(42) 低损耗硫系光纤的制备与性能研究, 2015 年(第七届)西部光子学学术会议论文集, 2015, 第 4 作者(43) Ytterbium-doped large-mode-area silica fiber fabricated by using chelate precursor doping technique, APPLIED OPTICS, 2014, 第 4 作者(44) Fabrication and characterization of Highly nonlinear, Osa topical conference:the 4th advances in optoelectronics and micro/nano-optics, 2014, 第 1 作者(45) Multiring large-mode-area delivery fiber for high power, APPLIED OPTICS, 2013, 第 7 作者
发表著作
(1) Industrial, Medical and Military Applications of Fluoride and Chalcogenide Glass Fibers, springer, 2022-01, 第 4 作者
指导学生
现指导学生
王珂荣 硕士研究生 080501-材料物理与化学
陈诗敏 博士研究生 070207-光学
董雨荷 博士研究生 080900-电子科学与技术