Field-dependent atomic relaxation in a squeezed vacuum

S. Hassan, T. Jarad, R. Puri, R. Bullough
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引用次数: 6

Abstract

The relaxation process of a single two-level atom driven by an intense resonant coherent field is studied in the presence of a broadband squeezed vacuum field. Generalized forms for the self-field operator and the field-dependent damping coefficients are derived. In the steady state, positive atomic inversion (~5%) is shown for some range of the phase of the squeezed vacuum field. The squeezing-induced enhanced and asymmetric coherence (i.e.?non-zero dispersive atomic polarization) induces profound asymmetry in the side-bands of the Mollow fluorescent spectrum and the absorptive?dispersive spectra near the Rabi side-band frequencies. The case of two and three cooperative atoms, instead of a single atom, shows (i)?positive atomic inversion in the steady state for larger interval of the squeeze phase parameter and more enhanced extrema for the atomic polarization components and (ii) the extra side peaks in the fluorescent spectrum become asymmetric and of dispersive-like profile. Dressed-state analysis in the single-atom case with the field-dependent decay process in the presence of the squeezed vacuum field is presented and shows that the inequality of the (field-dependent) decay rates of the dressed states leads to more positive inversion in the dressed states as compared with the normal vacuum case.
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压缩真空中与场相关的原子弛豫
研究了在宽带压缩真空场存在下,由强共振相干场驱动的单二能级原子的弛豫过程。导出了自场算子和场相关阻尼系数的广义形式。在稳定状态下,压缩真空场的某些相位范围出现正原子反转(~5%)。挤压诱导的增强和不对称相干(即?非零色散原子偏振)在Mollow荧光光谱的侧带和吸收?拉比边带频率附近的色散谱。两个和三个协同原子的情况,而不是一个原子,显示(i)?挤压相位参数间隔增大,原子极化分量极值增强,在稳态下原子正反转;(2)荧光光谱中多余的边峰变得不对称,呈色散状。本文对压缩真空场存在下单原子的场相关衰变过程进行了盛装态分析,结果表明盛装态(场相关)衰变速率的不平等导致盛装态的正反转比正常真空情况下的正反转要多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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