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首页> 外文期刊>Journal of Modern Optics >Photon conversion among multichromatic waves in two-level atom systems
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Photon conversion among multichromatic waves in two-level atom systems

机译:两能级原子系统中多色波之间的光子转换

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摘要

In this paper, we shall discuss a generalized version of. the JayneB-Cumrnings model in which a two-level atom is coupled to multichromatie waves with general frequencies and coupling constants. We shall show that this two-level atom system can be mapped into an effective model in which a quantum particle moves in a lattice whose sites specify the number of photons in the multichromatic waves. In general, when the number L of modes is greater than two, large energy exchanges among different monochromatic waves are possible [I.i 2 is a special case; exchanges of a large number of photons are possible only for degenerate modes). Depending on the frequencies of the elecromagnetic modes, we can classify the two-level systems in two categories. In one case, the eigenl unctions of the quantum particle are extended and thus exchange of a large number of photons is possible. In the other case, the eigenfunctions of the quantum particle are localized and exchange of a large number of photons is greatly suppressed.
机译:在本文中,我们将讨论的广义版本。 JayneB-Cumrnings模型,其中两级原子耦合到具有一般频率和耦合常数的多色波。我们将表明,该两级原子系统可以映射到一个有效的模型中,其中量子粒子在晶格中移动,其位置指定了多色波中的光子数。通常,当模式数L大于2时,可能会在不同的单色波之间进行大的能量交换[I.i 2是一种特殊情况;交换大量光子仅适用于简并模式。根据电磁模式的频率,我们可以将两级系统分为两类。在一种情况下,量子粒子的本征功能被扩展,因此可以交换大量光子。在另一种情况下,量子粒子的本征函数是局部的,并且大大抑制了大量光子的交换。

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