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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Laser-noise-induced correlations and anti-correlations in electromagnetically induced transparency
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Laser-noise-induced correlations and anti-correlations in electromagnetically induced transparency

机译:电磁噪声引起的激光噪声引起的相关性和反相关性

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High degrees of intensity correlation between two independent lasers were observed after propagation through a rubidium vapor cell in which they generate Electromagnetically Induced Transparency (EIT). As the optical field intensities are increased, the correlation changes sign (becoming anti-correlation). The experiment was performed in a room temperature rubidium cell, using two diode lasers tuned to the Rb-85 D-2 line (lambda = 780 nm). The cross-correlation spectral function for the pump and probe fields is numerically obtained by modeling the temporal dynamics of both field phases as diffusing processes. We explored the dependence of the atomic response on the atom-field Rabi frequencies, optical detuning and Doppler width. The results show that resonant phase-noise to amplitude-noise conversion is at the origin of the observed signal and the change in sign for the correlation coefficient can be explained as a consequence of the competition between EIT and Raman resonance processes.
机译:在穿过through蒸气池传播后,观察到两个独立的激光器之间存在高度的强度相关性,在they蒸气池中它们会产生电磁感应的透明度(EIT)。随着光场强度的增加,相关性会改变符号(成为反相关性)。该实验是在室温rub电池中进行的,使用了两个调谐到Rb-85 D-2线(λ= 780 nm)的二极管激光器。通过将两个场相的时间动态建模为扩散过程,可以在数值上获得泵浦场和探测场的互相关谱函数。我们探索了原子响应对原子场拉比频率,光学失谐和多普勒宽度的依赖性。结果表明,共振相位噪声到幅度噪声的转换是观察到的信号的起点,并且相关系数的符号变化可以解释为EIT和拉曼共振过程之间竞争的结果。

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