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Ionic vibration induced transparency and Autler-Townes splitting

机译:离子振动诱导透明度和自动排放式分裂

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In this work, the absorption spectrum of a two-level ion in a linear Paul trap is investigated, the ion is supposed to be driven by two orthogonal laser beams, the one along the axial of the trap acts as the control light beam, the other as probe beam. When the frequency of the control laser is tuned to the first red sideband of the ionic transition, the coupling between the internal states of the ion and vibrational mode turns out to be a Jaynes-Cummings (JC) Hamiltonian, which together with the coupling between the probe beam and the two-level ion constructs a Lambda-type three-level structure. In this case the transparency window may appear in the absorption spectrum of the probe light, which is induced by the ionic vibration and is very similar to the cavity induced transparency (Rice and Brecha 1996 Opt. Commun. 126 230-5). On the other hand, when the frequency of the control laser is tuned to the first blue sideband of the ionic transition, the two-level ion and vibrational mode are governed by an anti-Jaynes-Cummings (anti-JC) Hamiltonian, the total system including the probe beam forms a V-type three-level structure. And the Autler-Townes splitting in the absorption spectrum is found.
机译:在这项工作中,研究了两级离子在线性保罗阱中的吸收光谱,离子应该由两个正交激光束驱动,沿着陷阱的轴向充当控制光束,所以其他作为探针梁。当控制激光器的频率被调谐到离子转变的第一红色边带时,离子和振动模式的内部状态之间的耦合变成了jaynes-cummings(JC)Hamiltonian,其与耦合在一起探针光束和两级离子构造λ型三层结构。在这种情况下,透明度窗口可以出现在探针光的吸收光谱中,该探针光谱由离子振动引起的,并且与腔诱导透明度非常相似(米和Brecha 1996 Opt。Communce。126 230-5)。另一方面,当控制激光的频率被调谐到离子转变的第一蓝色边带时,双层离子和振动模式由抗jaynes-cummings(反Jc)汉密尔顿人,总计包括探针光束的系统形成V型三级结构。并且发现了吸收光谱中的自动界线。

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