论文标题

光子和磁场控制的电子传输的多元共振光子腔双量子点系统

Photon and magnetic field controlled electron transport of a multiply-resonant photon-cavity double quantum dot system

论文作者

Abdulkhalaq, Halo Anwar, Abdullah, Nzar Rauf, Gudmundsson, Vidar

论文摘要

我们通过双量子点(DQD)研究电子传输,并以单个光子模式耦合到空腔。 DQD连接到两个电子储层,总系统在外部垂直磁场下。 DQD系统表现出复杂的多级能谱。通过改变光子能量,在磁场的低强度下发现了DQD腔系统的光子穿衣电子状态之间的几种抗裂纹。抗交叉被确定为这些状态之间的光子交换引起的多个RABI共振。结果,由于多个RABI共振引起的电流下降。通过增加外部磁场的强度,发现电流倾斜到较低的光子能量,并且可以减小电流倾角。 DQD系统的磁场强度与状态的几何形状的相互作用可以削弱多个RABI共振,在这种抗跨交叉之间,抗横断之间的光子交换降低。因此,我们可以确认可以通过操纵外部磁场和光子腔参数来控制DQD腔系统中的电子传输行为。

We study electron transport through double quantum dots (DQD) coupled to a cavity with a single photon mode. The DQD is connected to two electron reservoirs, and the total system is under an external perpendicular magnetic field. The DQD system exhibits a complex multi-level energy spectrum. By varying the photon energy, several anti-crossings between photon dressed electron states of the DQD-cavity system are found at low strength of the magnetic field. The anti-crossings are identified as multiple Rabi resonances arising from the photon exchange between these states. As the results, a dip in the current is seen caused by the multiple Rabi resonances. By increasing the strength of the external magnetic field, a dislocation of the current dip to a lower photon energy is found and the current dip can be diminished. The interplay of the strength of the magnetic field and the geometry of the states the DQD system can weaken the multiple Rabi resonances in which the exchange of photon between the anti-crossings is decreased. We can therefore confirm that the electron transport behavior in the DQD-cavity system can be controlled by manipulating the external magnetic field and the photon cavity parameters.

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