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Low-cost, highly efficient, and tunable ultrafast laser technology based on directly diode-pumped Cr:Colquiriites

机译:基于直接二极管泵浦Cr:Colquiriites的低成本,高效率和可调谐的超快激光技术

摘要

This doctoral project aims to develop robust, ultra low-cost ($5,000-20,000), highly-efficient, and tunable femtosecond laser technology based on diode-pumped Cr:Colquiriite gain media (Cr:LiCAF, Cr3+:LiSAF and Cr:LiSGaF). By using inexpensive single-mode diodes ($150) as the pump source, we have obtained continuous-wave (cw) output powers >250-mW with slope efficiencies >50%. Record cw tuning ranges were demonstrated for Cr:LiSAF (775-1042 nm), Cr:LiSGaF (777-977 nm), and Cr:LiCAF (754-871 nm). For femtosecond pulse generation, semiconductor saturable absorber mirrors (SESAMs/SBRs) were developed, which were used to initiate and sustain mode-locking. Typical performance was ~25-100 fs pulses, with an optical spectrum in the 770-920 nm range, with ~1-2 nJ of pulse energies from ~100-MHz repetition rate cavities. Record electrical-to-optical conversion efficiencies of ~10% were demonstrated in the cw mode-locked regime. A mode-locked tuning range of 767-817 nm, with ~130-fs long pulses was obtained by using Cr:LiCAF as gain medium. With the Cr:LiSAF gain medium, using regular SESAMs/SBRs centered around 800 nm, 850 nm, and 910 nm, mode-locked tuning ranges of 803-831 nm, 828-873 nm, and 890-923 nm were demonstrated, respectively. By using a broadband oxidized SESAM/SBR, a record tuning range of 800-905 nm was demonstrated with ~150-fs long pulses. Using an extended cavity Cr:LiCAF laser, pulse energies >15-nJ with peak powers exceeding 100-kW were obtained. We performed the first cavity-dumping experiments with a Cr:Colquiriite laser and demonstrated pulse energies >100-nJ, and peak powers approaching MW level, at repetition rates up to 50-kHz. Cr:LiCAF gain media were also pumped by single-emitter multimode diodes, where we obtained >2-W output power in cw operation, and ~100-fs pulses with 390-mW of average power at a repetition rate of 140 MHz in cw mode-locked operation. As an example application area for this low cost technology, we performed multiphoton microcopy experiments with a single-mode diode-pumped Cr:LiCAF laser. We also performed attosecond-resolution timing jitter characterization experiments of the femtosecond Cr:LiSAF laser, and measured a record-low upper limit for the integrated timing jitter of the Cr:LiSAF laser (137-attoseconds in 10 kHz-10 MHz range).
机译:该博士项目旨在开发基于二极管泵浦Cr:白云石增益介质(Cr:LiCAF,Cr3 +:LiSAF和Cr:LiSGaF)的强大,超低成本(5,000-20,000美元),高效且可调的飞秒激光技术。 。通过使用廉价的单模二极管(150美元)作为泵浦源,我们获得了连续波(cw)输出功率> 250 mW,斜率效率> 50%。证明了Cr:LiSAF(775-1042 nm),Cr:LiSGaF(777-977 nm)和Cr:LiCAF(754-871 nm)的创纪录的连续波调谐范围。为了产生飞秒脉冲,开发了半导体可饱和吸收镜(SESAMs / SBR),用于启动和维持锁模。典型的性能是〜25-100 fs脉冲,光谱在770-920 nm范围内,来自〜100 MHz重复频率腔的脉冲能量约为1-2 nJ。在cw锁模模式下,电光转换效率达到了创纪录的〜10%。通过使用Cr:LiCAF作为增益介质,获得了767-817 nm的锁模调谐范围,具有约130-fs的长脉冲。使用Cr:LiSAF增益介质,使用以800 nm,850 nm和910 nm为中心的常规SESAM / SBR,分别显示了803-831 nm,828-873 nm和890-923 nm的锁模调谐范围。 。通过使用宽带氧化的SESAM / SBR,在约150 fs的长脉冲下,记录的调谐范围为800-905 nm。使用扩展腔Cr:LiCAF激光器,可获得峰值功率超过100-kW的脉冲能量> 15-nJ。我们使用Cr:Colquiriite激光进行了第一次腔体倾倒实验,并证明了脉冲能量> 100-nJ,峰值功率接近MW级,重复频率高达50kHz。 Cr:LiCAF增益介质也由单发射器多模二极管泵浦,在连续工作模式下,我们获得了> 2 W的输出功率,在连续工作模式下以140 MHz的重复频率获得了约100-fs的脉冲,平均功率为390 mW锁模操作。作为此低成本技术的示例应用领域,我们使用单模二极管泵浦Cr:LiCAF激光器进行了多光子显微实验。我们还对飞秒Cr:LiSAF激光器进行了以秒为单位的定时抖动表征实验,并测量了Cr:LiSAF激光器的集成定时抖动的最低记录上限(在10 kHz-10 MHz范围内为137阿秒)。

著录项

  • 作者

    Demirbas Umit;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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