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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Dynamics of Spontaneous Radiation of Atoms Scattered by a Resonance Standing Light Wave
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Dynamics of Spontaneous Radiation of Atoms Scattered by a Resonance Standing Light Wave

机译:共振驻光波散射原子的自发辐射动力学

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The scattering of atoms by a resonance standing light wave is considered under conditions when the lower of two resonance levels is metastable, while the upper level rapidly decays due to mainly spontaneous radiative transitions to the nonresonance levels of an atom. The diffraction scattering regime is studied, When the Rabi frequency is sufficiently high and many diffraction maxima are formed due to scattering. The dynamics of spontaneous radiation of an atom is investigated. It is shown that scattering slows down substantially the radiative decay of the atom. The regions and characteristics of the power and exponential decay are determined. The adiabatic and nonadiabatic scattering regimes are studied. It is shown that the wave packets of atoms in the metastable and resonance excited states narrow down during scattering. A limiting (minimal) size of the wave packets is found, which is achieved upon nonadiabatic scattering in the case of a sufficiently long interaction time.
机译:在两个共振能级中较低的一个是亚稳态的条件下,考虑了共振驻光波对原子的散射,而较高的能级由于主要自发的辐射跃迁到原子的非共振能级而迅速衰减。当Rabi频率足够高并且由于散射而形成许多衍射最大值时,研究了衍射散射状态。研究了原子自发辐射的动力学。结果表明,散射会大大减慢原子的辐射衰减。确定了幂和指数衰减的区域和特性。研究了绝热和非绝热散射机制。结果表明,在散射过程中,处于亚稳态和共振激发态的原子波包变窄。找到了波包的极限(最小)尺寸,这是在足够长的相互作用时间的情况下通过非绝热散射实现的。

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