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Coherent dynamics of excitons and biexcitons in intermixed ZnO/Zn1-xMgxO quantum wells by ion implantation

机译:混合ZnO / Zn 1-X / INM> MG X O量子孔的相干动力学通过离子注入

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We have performed one and two colour, spectrally resolved four-wave mixing (FWM) experiments on a series of ZnO/Zn1-xMgxO quantum wells with different oxygen ion implantation doses. The results show that at room temperature and with resonant excitation, excitonic coherences are maintained beyond the duration of the laser pulse. A transient signal observed at negative delays in the two-colour experiments is attributed to biexcitonic coherence. The use of the two colours allows the purely biexcitonic contribution to be resolved from any other many-body or excitonic contributions at negative delays; therefore the transient signal observed indicates the creation of biexcitons in the ZnO quantum well at room temperature. Coherence times as long as 480 fs at room temperature are found for both excitons and biexcitons and are shown to be independent of implantation dose.
机译:一系列ZnO / Zn 1-X-X / INM> Mg X O量子孔,用不同的氧气进行了一系列和两种颜色,光谱分辨的四波混合(FWM)实验离子植入剂量。结果表明,在室温和谐振激励下,激发器相干性保持超出激光脉冲的持续时间。在双色实验中以负延迟观察到的瞬态信号归因于Biexcitonic的相干性。两种颜色的使用允许在负延迟的任何其他许多身体或激发贡献中解决纯粹的Biexcitonic贡献;因此观察到的瞬态信号表明在室温下ZnO量子中的Biexcitons的产生。只要有激子和Biexcitons发现室温下480fs的相干时间,并且被证明与植入剂量无关。

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