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Spectroscopic study of ultracold rubidium atoms in an optical dipole force trap.

机译:光学偶极力阱中超冷rub原子的光谱研究。

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摘要

The interaction of light with atoms and molecules is of fundamental interest in many branches of science. In atomic physics, this interaction can be used to cool and spatially confine (trap) atoms. These traps can be used as the starting point for other experiments, but the dynamics of the cooling and trapping processes is itself of interest. In order to better understand the physics of trapping atoms in an optical dipole force trap, we have conducted a series of spectroscopic measurements of ultracold rubidium atoms in such a trap. The trap was created at the focus of a Nd:YAG laser beam with wavelength 1064nm and nearly Gaussian spatial mode. For rubidium, the trap light is red-detuned and the atoms are confined to the highest intensity in the beam. In order to probe the atoms confined in the trap, we have performed spectroscopy on the 5S1/2 → 5P3/2 transition. Because the polarizability of the ground and excited states is not the same at the trap wavelength, the spectra exhibit both a shift and inhomogeneous broadening. We have investigated the spectra for both linear and circular polarized traps. We also studied the application of a second laser to couple the excited state (5P3/2) to another higher excited state (5D5/2) to reduce the inhomogeneous broadening of the 5S1/2 → 5P 3/2 transition. Finally, two-photon spectroscopy was performed on atoms in the dipole force trap and compared to spectra taken in a magneto optical trap (MOT). Autler-Townes splitting was clearly observed in the MOT and appears to have been observed in the dipole force trap also.
机译:光与原子和分子的相互作用在科学的许多分支中都具有根本的意义。在原子物理学中,这种相互作用可用于冷却原子并在空间上限制(捕获)原子。这些阱可以用作其他实验的起点,但是冷却和阱过程的动力学本身是令人关注的。为了更好地了解在光学偶极力阱中捕获原子的物理原理,我们对这种阱中的超冷rub原子进行了一系列光谱测量。该陷阱是在Nd:YAG激光束的焦点处产生的,该激光束的波长为1064nm,接近高斯空间模。对于rub,陷阱光是红色失谐的,原子被限制在光束中的最高强度处。为了探测限制在陷阱中的原子,我们对5S1 / 2→5P3 / 2跃迁进行了光谱分析。因为在陷阱波长处基态和激发态的极化率不同,所以光谱显示出位移和不均匀加宽。我们已经研究了线性和圆偏振陷阱的光谱。我们还研究了第二激光的应用,以将激发态(5P3 / 2)耦合到另一个更高的激发态(5D5 / 2),以减少5S1 / 2→5P 3/2跃迁的不均匀加宽。最后,对偶极力阱中的原子进行了双光子光谱分析,并将其与在磁光阱(MOT)中获得的光谱进行了比较。在MOT中清楚地观察到Autler-Townes分裂,并且在偶极力阱中也观察到了分裂。

著录项

  • 作者

    Ahmed, Eman Mohammed.;

  • 作者单位

    Old Dominion University.;

  • 授予单位 Old Dominion University.;
  • 学科 Physics Low Temperature.;Physics Atomic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;
  • 关键词

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