激光与红外
激光與紅外
격광여홍외
LASER & INFRARED
2014年
8期
884-887
,共4页
饱和吸收体%稳频%锥形%拍频%线宽
飽和吸收體%穩頻%錐形%拍頻%線寬
포화흡수체%은빈%추형%박빈%선관
saturable absorber%frequency stabilization%taper%beat frequency%linewidth
为了实现低阈值光纤激光器的频率稳定输出,设计了环形腔光纤激光器,以光纤光栅作为波长选择元件,在未泵浦光纤饱和吸收体和其锥形化结构的协同作用下实现激光纵模选择,获得了短光纤饱和吸收体长度下的单纵模激光稳定输出。介绍了未泵浦光纤饱和吸收体选频原理和锥形结构滤波原理,实验研究了不同光纤饱和吸收体长度下激光纵模特性和波长稳定性,以及锥形化光纤饱和吸收体的激光输出特性。实验表明,引入锥形化结构的饱和吸收体后,激光器能够稳定输出1545 nm 波长的单纵模激光,并有效降低光纤激光器阈值至7.58 mW,采用延迟自外差方法测得该光纤激光器的线宽小于8 kHz。
為瞭實現低閾值光纖激光器的頻率穩定輸齣,設計瞭環形腔光纖激光器,以光纖光柵作為波長選擇元件,在未泵浦光纖飽和吸收體和其錐形化結構的協同作用下實現激光縱模選擇,穫得瞭短光纖飽和吸收體長度下的單縱模激光穩定輸齣。介紹瞭未泵浦光纖飽和吸收體選頻原理和錐形結構濾波原理,實驗研究瞭不同光纖飽和吸收體長度下激光縱模特性和波長穩定性,以及錐形化光纖飽和吸收體的激光輸齣特性。實驗錶明,引入錐形化結構的飽和吸收體後,激光器能夠穩定輸齣1545 nm 波長的單縱模激光,併有效降低光纖激光器閾值至7.58 mW,採用延遲自外差方法測得該光纖激光器的線寬小于8 kHz。
위료실현저역치광섬격광기적빈솔은정수출,설계료배형강광섬격광기,이광섬광책작위파장선택원건,재미빙포광섬포화흡수체화기추형화결구적협동작용하실현격광종모선택,획득료단광섬포화흡수체장도하적단종모격광은정수출。개소료미빙포광섬포화흡수체선빈원리화추형결구려파원리,실험연구료불동광섬포화흡수체장도하격광종모특성화파장은정성,이급추형화광섬포화흡수체적격광수출특성。실험표명,인입추형화결구적포화흡수체후,격광기능구은정수출1545 nm 파장적단종모격광,병유효강저광섬격광기역치지7.58 mW,채용연지자외차방법측득해광섬격광기적선관소우8 kHz。
In order to realize the stable output of a low-threshold fiber laser,a fiber ring laser is designed,which em-ploys a fiber Bragg grating as the wavelength selector,and the laser longitudinal mode choice is realized under un-pumped erbium-doped fiber saturable absorber and its tapered structure.The stable single-longituinal-mode laser out-put can be obtained under short fiber saturable absorber.The principles of fiber saturable absorber on frequency se-lection and tapered structure filtering are introduced.The characteristics of laser longitudinal modes and wavelength stability are studied under fiber saturable absorbers of different length,and the laser output characteristics of tapered fiber saturable absorber are investigated experimentally.The experimental results show that,after introducing the ta-pered fiber saturable absorber,the single-longitudinal-mode laser output can steadily be obtained at 1545 nm,and the threshold of the fiber laser can be effectively reduced down to 7.58 mW.The laser linewidth that is measured by the delayed self-heterodyne method is less than 8 kHz.