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Non-perturbative Probe Laser-induced Fluorescence Spectroscopy of Laser-cooled Ca- Plasma in a Linear Radiofrequency Ion Trap

机译:在线射频离子阱中的非扰动探针激光诱导的激光冷却CA-等离子体荧光光谱

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A non-perturbative probe laser induced fluorescence (LIF) system has been developed to observe a laser-cooled one-component plasma. Since the undistorted spectra can be obtained using this measurement system, a quantitative evaluation of the spectrum shape of the laser-cooled plasma was achieved. The spectra are decomposed into the Doppler and Lorentzian components using a Voigt function. The ion temperature is calculated as 4.5 K from the Doppler component, and the Coulomb coupling parameter Γ is calculated as 0.5 using the ion temperature. On the other side, the Lorentz width is unexpectedly larger than the natural linewidth by 70 MHz or more, and much larger than the ion-ion collisional broadening derived from the Debye screening assumption. The results show that the Debye screening assumption is already incorrect at Γ = 0.5.
机译:已经开发出非扰动探针诱导荧光(LIF)系统以观察激光冷却的单组分等离子体。由于使用该测量系统可以获得未变化的光谱,因此实现了激光冷却等离子体的光谱形状的定量评估。光谱使用Voigt函数分解成多普勒和Lorentzian组件。离子温度从多普勒组分计算为4.5k,并且使用离子温度计算库仑偶联参数γ为0.5。在另一方面,洛伦兹宽度意外地大于自然宽度70MHz或更大,远大于离防筛选假设的离子离子碰撞扩展。结果表明,在γ= 0.5的右侧筛选假设已经不正确。

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