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All-fiber frequency comb employing a single walled carbon nanotube saturable absorber for optical frequency metrology in near infrared.

机译:采用单壁碳纳米管可饱和吸收体的全光纤频率梳,用于近红外的光频率计量。

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摘要

Optical frequency combs produced by mode-locked fiber lasers are us eful tools for high precision frequency metrology and molecular spectroscopy in a robust and portable format. We have specifically investigated erbium doped fiber mode-locked lasers that use single-walled carbon nanotubes as a saturable absorber. We have, for the first time, developed and phase- stabilized a carbon nanotube fiber laser (CNFL) frequency comb. The carbon nanotube saturable absorber, which was fabricated using an optically driven deposition method, permits a high repetition frequency (>150 MHz) since an optical nonlinearity of fibers is not used for mode-locking. The CNFL comb combined with a parabolic pulse erbium doped fiber amplifier (EDFA) has shown a compact, robust, and cost-effective supercontinuum source. The amplified pulse from the parabolic pulse EDFA was compressed with a hollow-core photonic bandgap fiber, which produced a wave-breaking-free pulse with an all-fiber set-up. The stabilized comb has demonstrated a fractional instability of 1.2 x10-11 at 1 sec averaging time, the reference-limited instability. We have performed optical frequency metrology with the CNFL comb and have measured an optical frequency, P(13) which is a molecular overtone transition of C2H2. The measured frequency has shown a good agreement with the known value within an uncertainty of 10 kHz.;In order to extend the application of the CNFL comb such as multi-heterodyne dual comb spectroscopy, we have investigated the noise of the CNFL comb and particularly, the broad carrier envelope offset frequency (f0) linewidth of the CNFL comb. The primary noise source is shown to be white amplitude noise on the oscillator pump laser combined with the sensitivity of the mode-locked laser to pump power fluctuations. The control bandwidth of f0 was limited by the response dynamics of the CNFL comb. The significant reduction of comb noise has been observed by implementing a phase-lead compensation to extend control bandwidth of the comb and by reducing the pump relative intensity noise simultaneously. Therefore the f0 linewidth has been narrower from 850 kHz to 220 kHz. The integrated phase noise for the f0 lock is 1.6 radians from 100 Hz to 102 kHz.
机译:锁模光纤激光器产生的光频率梳是我们以强大且便携的格式用于高精度频率计量和分子光谱学的有效工具。我们专门研究了使用单壁碳纳米管作为可饱和吸收剂的掺ped光纤锁模激光器。我们首次开发并稳定了碳纳米管光纤激光器(CNFL)频率梳。使用光驱动沉积方法制造的碳纳米管可饱和吸收剂允许高重复频率(> 150 MHz),因为光纤的光学非线性未用于锁模。 CNFL梳与抛物线形脉冲掺do光纤放大器(EDFA)结合使用,已显示出紧凑,坚固且经济高效的超连续谱光源。来自抛物线脉冲EDFA的放大脉冲被中空光子带隙光纤压缩,这产生了一个无断波脉冲并具有全光纤结构。稳定的梳子在平均1秒的时间内显示出1.2 x10-11的分数不稳定性,即参考极限不稳定性。我们用CNFL梳进行了光频率计量,并测量了光频率P(13),它是C2H2的分子泛音跃迁。测量的频率在10 kHz的不确定度内与已知值显示出良好的一致性。;为了扩展CNFL梳的应用,例如多外差双梳光谱,我们研究了CNFL梳的噪声,特别是,即CNFL梳的宽载波包络偏移频率(f0)线宽。示出的主要噪声源是振荡器泵浦激光器上的白振幅噪声,以及锁模激光器对泵浦功率波动的敏感性。 f0的控制带宽受CNFL梳的响应动力学限制。通过执行相位超前补偿以扩展梳齿的控制带宽并同时​​降低泵的相对强度噪声,可以观察到梳齿噪声的显着降低。因此,f0线宽从850 kHz缩小到220 kHz。 f0锁的积分相位噪声在100 Hz至102 kHz之间为1.6弧度。

著录项

  • 作者

    Lim, Jinkang.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Physics Condensed Matter.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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