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Four-wave mixing in a non-degenerate four-level diamond configuration in the hyperfine Paschen–Back regime.

机译:在超精细Paschen-Back模式中,四波混频采用非简并四级金刚石构型。

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摘要

We present an experimental study of seeded four-wave mixing (4WM) using a diamond excitation scheme (with states from the 5S1/2,5P1/2,5P3/25S1/2,5P1/2,5P3/2 and 5D3/25D3/2 terms) in a thermal vapour of 87Rb87Rb atoms. We investigate the 4WM spectra under the application of a strong magnetic field (0.6 T). The Zeeman interaction is strong enough to realize the hyperfine Paschen–Back regime, which has the effect of separating the optical transitions by more than the Doppler width, thereby significantly simplifying the spectral features. We show that this facilitates a quantitative comparison, even in the regime of strong dressing, between experimental data and a simple theoretical model based only on four-level optical Bloch equations.
机译:我们目前使用金刚石激发方案对种子四波混频(4WM)进行实验研究(状态分别为5S1 / 2、5P1 / 2、5P3 / 25S1 / 2、5P1 / 2、5P3 / 2和5D3 / 25D3 / 2个术语)在87Rb87Rb原子的热蒸汽中。我们在强磁场(0.6 T)的应用下研究4WM光谱。 Zeeman相互作用足够强大,可以实现超精细的Paschen-Back模式,该模式具有将光学跃迁分开多于多普勒宽度的作用,从而显着简化了光谱特征。我们证明,即使在强修整的情况下,这也有助于定量比较实验数据和仅基于四级光学Bloch方程的简单理论模型。

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