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Luminescence studies of trace gases through metastable transfer in cold helium jets.

机译:在冷氦射流中通过亚稳态转移对痕量气体的发光研究。

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摘要

Among the elements, Helium has the largest steps among its internal energy structure that can keep for long periods of time, hence the metastable helium moniker. It is referred to as a "nano-grenade" in some circles because of how much energy it can deliver to a space roughly the size of an atom. This work demonstrates a method to create metastable helium abundantly and it is used to excite trace amounts of oxygen to the point where the signal received from the oxygen was larger than the signal received from the helium in a cold atomized jet. Further cooling of the jet and turbulence added by a liquid helium surface worked to increase the oxygen signal and decrease the helium signal. This work investigates the possibility of forming a strong metastable helium source from a flowing helium gas jet excited by passing through ring electrodes introduced into a cryogenic environment using evaporated helium as a buffer gas.;Prior study of luminescence from trace gases at cold helium temperatures is virtually absent and so it is the motivation for this work to blaze the trail in this subject. The absence of ionic oxygen spectral lines from the transfer of energy that was well over the first ionization potential of oxygen made for a deeper understanding of collision dynamics with multiple collision partners. This opened the possibility of using the high energy states of oxygen after metastable transfer as a lasing transition previously unavailable and a preliminary analysis suggested that the threshold for lasing action should be easily overcome if feedback were introduced by an optical cavity.;To better understand the thermodynamics of the jet it was proposed to use diatomic nitrogen as an in situ thermometer, investigating whether the rotational degrees of freedom of the nitrogen molecule were in thermal equilibrium with the surrounding environment. If the gas was truly in thermodynamic equilibrium then the temperature given by the method of using collisions of a buffer gas and the rotational temperature determined spectroscopically should be in agreement. It was found that metastable transfer from helium in the jet provides enough energy to create a population of hot molecules of nitrogen that never reach thermal equilibrium with the buffer gas which is almost entirely made up of ground state helium atoms. This effect can be corrected for by adding some significant changes to the optical setup but are not outside the realm of possibility as they have been designed and built for other experiments. Therefore the rotational spectra of nitrogen could be used as an in situ thermometer at cryogenic temperatures with metastable helium present provided the hot molecule contribution due to collisions of the second kind of nitrogen and helium is measured and removed.
机译:在这些元素中,氦气在其内部能量结构中具有最大的台阶,可以保持很长一段时间,因此是亚稳态的氦绰号。在某些圈子里它被称为“纳米手榴弹”,因为它可以将多少能量传递到大约一个原子大小的空间中。这项工作演示了一种大量生成亚稳态氦的方法,该方法可用于激发痕量的氧气,直至在冷雾化射流中从氧气接收的信号大于从氦接收的信号。液氦表面所产生的射流和湍流的进一步冷却有助于增加氧气信号并降低氦信号。这项工作研究了由流动的氦气射流形成强亚稳氦源的可能性,该射流是通过将环形电极引入环流电极而引入的,该环电极使用蒸发的氦气作为缓冲气体进入低温环境。几乎不存在,因此,这项工作的动机是开拓这一主题。能量传递中没有离子氧谱线,该谱线远高于氧气的第一个电离势,这使人们可以更深入地了解与多个碰撞伙伴的碰撞动力学。这就开辟了使用亚稳态转移后氧气的高能态作为以前无法​​获得的激光转变的可能性,初步分析表明,如果通过光腔引入反馈,则应轻松克服激光作用的阈值。有人提出使用射流的热力学来使用双原子氮作为原位温度计,以调查氮分子的旋转自由度是否与周围环境处于热平衡状态。如果气体真正处于热力学平衡状态,则使用缓冲气体碰撞的方法所给出的温度与光谱确定的旋转温度应一致。已经发现,射流中氦气的亚稳态转移提供了足够的能量,以产生一群热氮分子,这些氮分子从未与几乎完全由基态氦原子组成的缓冲气体达到热平衡。可以通过在光学装置上添加一些重大更改来纠正此影响,但由于已针对其他实验进行了设计和构建,因此这并不超出可能性范围。因此,如果测量并去除了由于第二种氮与氦的碰撞而产生的热分子贡献,则在低温下存在亚稳氦的情况下,氮的旋转光谱可以用作低温下的原位温度计。

著录项

  • 作者

    Wilde, Scott Colton.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Molecular physics.;Optics.;Atomic physics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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