首页|基于注入锁定技术的单频连续高功率1342nm Nd:YVO4激光器

基于注入锁定技术的单频连续高功率1342nm Nd:YVO4激光器

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研究了一种基于注入锁定技术的 888 nm 半导体激光器(LD)泵浦的高功率单频可调谐1342 nm Nd:YVO4 激光器.采用最大输出功率 20 mW分布式反馈单频半导体 1342 nm激光器作为注入种子,利用lock-in(LI)技术,对LD端泵的Nd:YVO4 环形腔激光器进行种子注入,实现了单频可调谐激光输出.激光器最大平均输出功率为 13.9 W,测量的线宽为 41 MHz,调谐范围为 1341.6774~1341.8025 nm.x轴和y轴的光束质量M2因子分别为Mx2=1.30和My2= 1.23.实验结果表明:与先前文献报道的注入锁定1342 nm可调谐激光的结果相比,所需种子功率大幅减小,输出功率也有所提升.
A high-power single-frequency continuous-wave 1342 nm Nd:YVO4 laser with injection-locking
Objective The single-frequency lasers operating at 1.3 μm have been extensively investigated in a variety of fields,including quantum optics and fiber optical communication.A noteworthy example is the single-frequency tunable continuous-wave 671 nm laser based on frequency doubling of 1342 nm laser,which is near the D-line atomic transitions(670.97 nm)of lithium vapor.Consequently,it finds important applications in the field of atomic physics related to lithium atoms,such as optical cooling,lithium atom interferometer,and lithium isotope separation.In applications like the lithium atom interferometer,a higher output power of the laser can yeild improved results.At present,the output power of single-frequency continuous-wave 1342 nm diode lasers is as low as several miliwatts,necessitating application by Raman laser amplifiers and solid-state laser amplifiers.Therefore,the entire system becomes large and heavy.This paper introduces an injection-locked single-frequency tunable 1342 nm Nd:YVO4 laser with high output power.The injection-locked laser offers the advantages of a small size and high gain,making it suitable for special demands.Methods In this paper,an injection-locked 1342 nm continuous-wave single-frequency tunable Nd:YVO4 laser is developed.The system employs an end-pumped Nd:YVO4 ring laser as the slave laser,with a distributed feedback laser(DFB)as the seed laser.The seed laser is coupled into the Nd:YVO4 ring laser through output mirror(Fig.1).To achieve cavity length locking,a lock-in(LI)module is employed.The LI module detects laser intensity through a photoelectric detector and provides feedback control by adjusting the voltage on the piezoelectric transducer(PZT).The Nd:YVO4 ring laser operates bidirectionally under free operation.When the PZT on the cavity mirror is adjusted to match the cavity length with the wavelength of the injected seed laser,the laser can operate unidirectionally,resulting in a single-frequency continuous-wave 1342 nm laser.The laser's tuning capability is achieved by changing the wavelength of the seed laser.Results and Discussions The measured output laser power in free operation is 13.9 W as recorded by power meter(Fig.2).In this state,the influence of the seed power on the injection locking of the ring laser is obtained(Fig.3).An output power of 13.9 W for the injection-locked laser is achieved with an input seed laser power of 20.69 mW.Under this condition,the tuning range of the laser is measured by a wave-meter,and a tuning range from 1341.6774 nm to 1341.8025 nm is achieved(Fig.4).Simultaneously,the laser line-width is studied using an F-P scanning interferometer(Fig.5).The laser operates in a single frequency with a line-width of approximately 41 MHz.The line-width of the output laser is enhanced compared to the seed laser,a result attributed to low seed power and the reverse-running laser mode in the cavity.The beam quality factors M2 of the injection-locked 1342 nm laser are determined to be Mx2= 1.3 in the x direction and My2= 1.23 in the y direction using a laser beam analyzer(Fig.6).The power fluctuations(RMS)at the 13.9 W of the laser are measured and the stability is better than±0.5%(Fig.7).Conclusions A high-power tunable single-frequency 1342 nm Nd:YVO4 laser based on LI injection-locked technology was successfully designed.The output power of injection-locked 1342 nm laser reached 13.9 W,with a DFB seed laser power of 20 mW.The tunning range of the laser system was analyzed using a wave-meter,and the measured tuning range spanned from 1341.6774 nm to 1341.8025 nm.Various characteristics,including beam quality,laser line-width,power stability were comprehensively measured.To achieve the better stability and lower system noise,the methods of employing a seed laser with higher power and implementing methods such as reducing vibration and enclosed the structures have been identified as effective.

Nd:YVO4 lasercontinuous-wavesingle-frequencytunableinjection-locked

周子涵、王志敏、薄勇、张丰丰、赵文成、付莉、何汉星、崔大复、彭钦军

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中国科学院理化技术研究所固体激光重点实验室,北京 100190

中国科学院理化技术研究所功能晶体和激光技术重点实验室,北京 100190

中国科学院大学,北京 100049

Nd:YVO4激光器 连续波 单频 可调谐 注入锁定

2024

红外与激光工程
中国航天科工集团公司第三研究院第八三五八研究所

红外与激光工程

CSTPCD北大核心
影响因子:0.754
ISSN:1007-2276
年,卷(期):2024.53(1)
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