论文标题

通过四波混合光谱揭示的单个掺杂量子点的相干动力学

Coherent dynamics of a single Mn-doped quantum dot revealed by four-wave mixing spectroscopy

论文作者

Kasprzak, Jacek, Wigger, Daniel, Hahn, Thilo, Jakubczyk, Tomasz, Zinkiewicz, Łukasz, Machnikowski, Paweł, Kuhn, Tilmann, Motte, Jean-François, Pacuski, Wojciech

论文摘要

对于将来的量子技术,需要长量子状态寿命和有效的界面与外部光学激发的组合。在固体中,前者是通过单个自旋实现的,而后者则在半导体的人造原子与现代光子结构结合在一起。通过掺杂单个量子点,可以与磁离子掺入强烈的激子偶极子,从而达到两个方面的组合,从而提供了强烈的激子偶极子,该偶极子含有磁离子。在这里,我们执行四波混合光谱,以研究系统的量子相干性能。我们表征了未掺杂的CDTE量子点的光学特性,并找到了强烈的光子回波形成,该形成表现出显着的不均匀光谱宽度。通过交换相互作用将Mn $^{2+} $ ion纳入光谱,将其Spin-5/2纹理引入光谱,在相干响应中表现为六个单个光谱线。 MN旋转的随机翻转导致六个过渡能之间的一种特殊类型的光谱徘徊,这与准连续光谱徘徊的根本不同,这导致高斯不均匀地扩展。在这里,离散的自旋构成表现在其他偏度和振荡动力学中。

For future quantum technologies the combination of a long quantum state lifetime and an efficient interface with external optical excitation are required. In solids, the former is for example achieved by individual spins, while the latter is found in semiconducting artificial atoms combined with modern photonic structures. One possible combination of the two aspects is reached by doping a single quantum dot, providing a strong excitonic dipole, with a magnetic ion, that incorporates a characteristic spin texture. Here, we perform four-wave mixing spectroscopy to study the system's quantum coherence properties. We characterize the optical properties of the undoped CdTe quantum dot and find a strong photon echo formation which demonstrates a significant inhomogeneous spectral broadening. Incorporating the Mn$^{2+}$ ion introduces its spin-5/2 texture to the optical spectra via the exchange interaction, manifesting as six individual spectral lines in the coherent response. The random flips of the Mn-spin result in a special type of spectral wandering between the six transition energies, which is fundamentally different from the quasi-continuous spectral wandering that results in the Gaussian inhomogeneous broadening. Here, the discrete spin-ensemble manifests in additional dephasing and oscillation dynamics.

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