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Charge and spin control of ultrafast electron and hole dynamics in single CdSe/ZnSe quantum dots

机译:单CDSE / ZnSe量子点中超快电子和孔动力学的充电和旋转控制

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摘要

We study the dynamics of photoexcited electrons and holes in single negatively charged CdSe/ ZnSe quantum dotswith two-color femtosecond pump-probe spectroscopy. Aninitial characterization of the energy level structure is performed at lowtemperatures and magnetic fields of up to 5 T. Emission and absorption resonances are assigned to specific transitions between few-fermion states by a theoretical model based on a configuration interaction approach. To analyze the dynamics of individual charge carriers, we initialize the quantum system into excited trion states with defined energy and spin. Subsequently, the time-dependent occupation of the trion ground state is monitored by spectrally resolved differential transmission measurements. We observe subpicosecond dynamics for a hole excited to the D shell. The energy dependence of this D-to-S shell intraband transition is investigated in quantum dots of varying size. Excitation of an electron-hole pair in the respective p shells leads to the formation of singlet and triplet spin configurations. Relaxation of the p-shell singlet is observed to occur on a time scale of a few picoseconds. Pumping of p-shell triplet transitions opens up two pathways with distinctly different scattering times. These processes are shown to be governed by the mixing of singlet and triplet states due to exchange interactions enabling simultaneous electron and hole spin flips. To isolate the relaxation channels, we align the spin of the residual electron by a magnetic field and employ laser pulses of defined helicity. This step provides ultrafast preparation of a fully inverted trion ground state of the quantum dot with near unity probability, enabling deterministic addition of a single photon to the probe pulse. Therefore our experiments represent a significant step towards using single quantum emitters with well-controled inversion to manipulate the photon statistics of ultrafast light pulses.
机译:我们研究了单一负电荷Cdse / ZnSe量子Dotstwith双色飞秒泵探针光谱光谱光孔电子和孔的动态。能量水平结构的高度表征在低温和高达5吨的磁场下进行,发射和吸收共振通过基于配置交互方法的理论模型将发射和吸收谐振分配到几个FERMION状态之间的特定转变。为了分析各个电荷载流子的动态,我们将量子系统初始化为具有定义能量和旋转的激发小原状态。随后,通过频谱解析的差分传输测量监测TRIOP接地状态的时间依赖性占用。我们观察到对D壳体激发的孔的子秒动态。在不同尺寸的量子点中研究了该D-〜S壳内壳转换的能量依赖性。在相应的P壳中的电子 - 孔对的激发导致单态和三联旋转配置的形成。观察到p-shell单线的放松,以少量皮秒的时间等级发生。泵送P壳三重态转换,开辟了两个途径,散射时间明显。这些过程被证明通过单线态和三重态状态的混合来治理,由于交换相互作用,使得能够同时电子和孔旋转翻转。为了隔离松弛通道,我们通过磁场对准残余电子的旋转,并采用定义螺旋的激光脉冲。该步骤提供超速制备量子点的完全反转的TRIOIO接地状态,其具有接近统一概率,使得可以确定地向探针脉冲添加单个光子。因此,我们的实验代表了使用单量子发射器具有良好控制的反转来操纵超快光脉冲的光子统计的重要步骤。

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  • 来源
    《Physical review, B》 |2018年第4期|共14页
  • 作者单位

    Univ Konstanz Dept Phys D-78464 Constance Germany;

    Univ Konstanz Dept Phys D-78464 Constance Germany;

    Univ Konstanz Dept Phys D-78464 Constance Germany;

    Univ Munster Inst Festkorpertheorie Wilhelm Klemm Str 10 D-48149 Munster Germany;

    Univ Konstanz Dept Phys D-78464 Constance Germany;

    Univ Konstanz Dept Phys D-78464 Constance Germany;

    Univ Wurzburg Inst Phys EP 3 D-97074 Wurzburg Germany;

    Univ Wurzburg Inst Phys EP 3 D-97074 Wurzburg Germany;

    Univ Wurzburg Inst Phys EP 3 D-97074 Wurzburg Germany;

    Univ Munster Inst Festkorpertheorie Wilhelm Klemm Str 10 D-48149 Munster Germany;

    Univ Munster Inst Festkorpertheorie Wilhelm Klemm Str 10 D-48149 Munster Germany;

    Univ Konstanz Dept Phys D-78464 Constance Germany;

    Univ Konstanz Dept Phys D-78464 Constance Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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