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首页> 外文期刊>Physical review, B >Electron transitions for Dirac Hamiltonians with flat bands under electromagnetic radiation: Application to the alpha - T-3 graphene model
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Electron transitions for Dirac Hamiltonians with flat bands under electromagnetic radiation: Application to the alpha - T-3 graphene model

机译:电磁辐射下具有扁平带的Dirac Hamiltonians的电子转换:应用于α-T-3石墨烯模型

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摘要

In a system with a Dirac-like linear dispersion there are always states that fulfill the resonance condition for electromagnetic radiation of arbitrary frequency Omega. When a flat band is present, two coexistent kinds of resonant transitions are found. Considering the alpha - T-3 graphene model as a minimal model with a flat band and Dirac cones and describing the dynamics using the interaction picture, we study the band transitions induced by an external electromagnetic field. We find that transitions depend upon the relative angle between the electron momentum and the electromagnetic field wave vector. For parllel incidence, the transitions are found using Floquet theory, while for other angles perturbation theory is used. In all cases, the transition probabilities and the frequencies are found. For the parallel momentum, no symmetry is broken by the field, and light does not change the spectrum, while for some limit special cases of the parameter alpha or by charge doping, the system behaves as a three-level or two-level Rabi system. All these previous results were compared with numerical simulations. Good agreement was found between both. The obtained results show a rich system in which different kinds of transitions coexist.
机译:在具有Dirac的线性色散的系统中,总是符合任意频率ω的电磁辐射的共振条件。当存在扁平带时,发现了两个共存种类的共振转变。考虑到α-T-3石墨烯模型作为具有平坦带和DIRAC锥体的最小模型,并使用交互图像描述动态,我们研究了外部电磁场引起的带转换。我们发现过渡取决于电子动量与电磁场波矢量之间的相对角度。对于贴图发射,使用浮子理论发现过渡,而使用其他角度扰动理论。在所有情况下,发现过渡概率和频率。对于平行动量,该字段不打破对称性,并且光不会改变频谱,而对于参数α或充电掺杂的一些限制特殊情况,系统表现为三级或两级Rabi系统。将所有这些以前的结果与数值模拟进行了比较。两者之间都发现了良好的协议。所获得的结果表明,丰富的系统,其中不同种类的过渡共存。

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