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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Realization of position-dependent absorption based on biexciton coherence in a Quantum Dot Nanostructure
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Realization of position-dependent absorption based on biexciton coherence in a Quantum Dot Nanostructure

机译:基于双激子相干的量子点纳米结构中位置相关吸收的实现

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In this letter, the two-dimensional (2D) spatial-dependent of probe absorption based on biexciton coherence is investigated by monitoring the probe absorption spectra in a Quantum Dot (QD) Nanostructure. We find that due to the quantum interference which is set up by two control pulses that couples to a resonance of the biexciton, the 2D spatial distribution of probe absorption spectrum can be controlled via adjusting the system parameters. We study the effect of controlling parameters of the QD system on spatial distribution of the probe field absorption for two different cases in which the QD interacts with the standing-wave laser fields; first, when two laser fields which couple to a biexciton state, correspond to the two orthogonal standing-wave fields and couple the different transitions. Second, when only one of laser fields correspond to the combination of two orthogonal standing-wave fields, while the other one corresponds to a traveling-wave field. Results exhibit different interesting 2D absorption patterns. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这封信中,通过监测量子点(QD)纳米结构中的探针吸收光谱,研究了基于双激子相干的探针吸收的二维(2D)空间相关性。我们发现,由于由两个与双激子共振耦合的控制脉冲所建立的量子干扰,可以通过调节系统参数来控制探针吸收光谱的二维空间分布。我们研究了在量子点与驻波激光场相互作用的两种不同情况下,量子点系统的控制参数对探测场吸收空间分布的影响。首先,当两个耦合到双激子态的激光场对应于两个正交驻波场并耦合不同的跃迁时。第二,当仅一个激光场对应于两个正交驻波场的组合时,另一个激光场对应于行波场。结果显示出不同的有趣二维吸收模式。 (C)2015 Elsevier B.V.保留所有权利。

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