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Monolithic soft glass single frequency fiber lasers.

机译:单片软玻璃单频光纤激光器。

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摘要

Envisioning novel fully monolithic fiber-optical devices, this dissertation investigates four fiber optical devices both, active and passive, that contribute to the goal of further integrating and miniaturizing fiber optics.;An all phosphate glass fiber laser was designed in an effort to reduce laser intensity noise by reducing cavity losses and low mechanical strength that arise from intra-cavity fusion splices between silica fiber Bragg gratings (FBG) and phosphate active fiber in state of the art phosphate single frequency fiber lasers. Novel phosphate glass based FBGs have been fabricated utilizing high intensity laser pulses at 193 nm and a phase-mask. Net reflectivities of up to 70 % and a bandwidth of 50 pm have been achieved in the FBGs. The laser design comprised two of the novel FBGs and a short section of Er3+Yb3+ phosphate fiber to form a distributed Bragg reflector (DBR) laser. The performance of the new laser has been compared to a conventional phosphate fiber laser. Particular focus was put on the laser intensity noise due to its dependence on intra-cavity losses. Relative intensity noise (RIN) amplitudes of -80 dB/Hz have been measured for both lasers when operating at comparable output powers. For similar levels of absorbed pump power the relaxation oscillation frequencies (ROF) were shifted towards lower frequencies in the new laser. Excess FBG scattering losses and mode-field miss-match between the active and passive fiber limited the output power of the new laser to 16 mW compared to 140 mW in the conventional laser.;A monolithic all-phosphate glass fiber laser with up to 550 mW output power that is operating at a single longitudinal mode and exhibiting narrow linewidth is presented. The laser cavity has been formed by inscribing FBGs directly into heavily Er3+Yb 3+ doped phosphate glass fiber using femtosecond laser pulses and a phase mask, completely eliminating the need for intra-cavity fusion splices. A linewidth of less than 60 kHz and relaxation oscillation peak amplitudes below -100 dB/Hz without active suppression of RIN have been measured. The compact form factor and higher output power combined with the low noise and narrow linewidth characteristic make this laser an ideal candidate for ranging, interferometry and sensing applications.;Strong and robust Bragg gratings in optical fiber fabricated from highly photosensitive photo-thermo-refractive (PTR) glass are demonstrated. The fibers were drawn at 900 °C from a machined PTR-glass preform. A low power two beam interference pattern from a continuous wave (cw) He-Cd laser with a wavelength of 325 nm was used to write gratings into the fibers, achieving peak grating strengths of 20 dB and a spectral width of 45 pm. The gratings showed no sign of degradation when exposed to a high temperature environment of 425 ° C for several hours. This is significantly higher when compared to standard Telecom FBGs which are rated for operation temperatures below 200 °C.;A detailed study of novel mode-field adapters (MFA) based on multi-mode interference in graded index multi-mode fibers (GIMF) is presented. MFAs are often used in cases when low coupling losses between single mode fibers with very different mode-field diameters are needed. Here a new type of MFAs has been fabricated and characterized from a selection of commercially available single mode and graded index fibers. Compared to existing techniques the presented MFAs can be fabricated very quickly and are not limited to certain fiber types. Insertion losses of l0:5 dB over a spectral range of several hundred nm have been obtained with an ultra compact MFA with a length of 275 mum.
机译:本文以新颖的全单片光纤器件为研究对象,研究了四种有源和无源光纤器件,它们为进一步集成和小型化光纤的目标作出了贡献。通过减少现有技术磷酸盐单频光纤激光器中石英光纤布拉格光栅(FBG)和磷酸盐活性光纤之间的腔内熔接产生的空腔损耗和较低的机械强度,可以降低强度噪声。新型的基于磷酸盐玻璃的FBG已利用193 nm的高强度激光脉冲和相位掩膜制成。 FBG已实现了高达70%的净反射率和50 pm的带宽。激光器设计包括两个新颖的FBG和一小段Er3 + Yb3 +磷酸盐纤维,以形成分布式布拉格反射器(DBR)激光器。新型激光器的性能已与常规磷酸盐纤维激光器进行了比较。由于激光强度噪声取决于腔内损耗,因此特别关注激光强度噪声。当以可比较的输出功率工作时,两种激光器的相对强度噪声(RIN)幅度均已测量到-80 dB / Hz。对于相似水平的吸收泵浦功率,在新激光器中,弛豫振荡频率(ROF)向着较低频率移动。 FBG散射损耗过大以及有源光纤和无源光纤之间的模场失配将新激光器的输出功率限制在16 mW,而传统激光器为140 mW。;单片全磷酸盐玻璃纤维激光器,功率高达550给出了在单个纵向模式下运行且具有窄线宽的mW输出功率。激光腔是通过使用飞秒激光脉冲和相位掩膜将FBG直接刻入掺有Er3 + Yb 3+的磷酸盐玻璃纤维中而形成的,从而完全消除了腔内熔接的需要。已经测量到线宽小于60 kHz,弛豫振荡峰值幅度小于-100 dB / Hz,而RIN没有受到有效抑制。紧凑的外形尺寸和更高的输出功率加上低噪声和窄线宽特性使其成为测距,干涉测量和传感应用的理想选择。;由高光敏性光热折光光纤制成的坚固而坚固的布拉格光栅( PTR)玻璃进行了演示。纤维是在900°C下从机加工的PTR玻璃预制棒中拉出的。来自波长为325 nm的连续波(cw)He-Cd激光器的低功率两光束干涉图用于将光栅写入光纤,从而实现了20 dB的峰值光栅强度和45 pm的光谱宽度。光栅在425°C的高温环境下放置数小时后,没有出现退化的迹象。与额定工作温度低于200°C的标准电信FBG相比,这要高得多;基于渐变折射率多模光纤(GIMF)中基于多模干扰的新型模场适配器(MFA)的详细研究被表达。 MFA通常用于需要低模场直径的单模光纤之间的耦合损耗低的情况。在这里,已经制造出一种新型的MFA,并通过选择市售的单模和渐变折射率光纤对其进行了表征。与现有技术相比,提出的MFA可以非常快速地制造,并且不限于某些纤维类型。使用长度为275μm的超紧凑型MFA,已经获得了数百纳米光谱范围内10:5 dB的插入损耗。

著录项

  • 作者

    Hofmann, Peter.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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