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Ultrabright single-photon source on diamond with electrical pumping at room and high temperatures

机译:室温下和高温下具有电泵浦的钻石上的超亮单光子源

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Download video View all New J. Phys. video abstracts The recently demonstrated electroluminescence of color centers in diamond makes them one of the best candidates for room temperature single-photon sources. However, the reported emission rates are far off what can be achieved by state-of-the-art electrically driven epitaxial quantum dots. Since the electroluminescence mechanism has not yet been elucidated, it is not clear to what extent the emission rate can be increased. Here we develop a theoretical framework to study single-photon emission from color centers in diamond under electrical pumping. The proposed model comprises electron and hole trapping and releasing, transitions between the ground and excited states of the color center as well as structural transformations of the center due to carrier trapping. It provides the possibility to predict both the photon emission rate and the wavelength of emitted photons. Self-consistent numerical simulations of the single-photon emitting diode based on the proposed model show that the photon emission rate can be as high as 100 kcounts s?1 at standard conditions. In contrast to most optoelectronic devices, the emission rate steadily increases with the device temperature achieving of more than 100 Mcount s?1 at 500 K, which is highly advantageous for practical applications. These results demonstrate the potential of color centers in diamond as electrically driven non-classical light emitters and provide a foundation for the design and development of single-photon sources for optical quantum computation and quantum communication networks operating at room and higher temperatures.
机译:下载视频查看全部New J. Phys。视频摘要最近展示的钻石色中心的电致发光使其成为室温单光子源的最佳候选者之一。但是,所报告的发射率与最先进的电驱动外延量子点所能达到的发射率相去甚远。由于尚未阐明电致发光机理,因此尚不清楚可以将发光速率提高到何种程度。在这里,我们建立了一个理论框架来研究在电泵作用下钻石色心的单光子发射。提出的模型包括电子和空穴的俘获和释放,色中心的基态和激发态之间的跃迁以及由于载流子俘获而导致的中心结构转变。它提供了预测光子发射速率和发射光子波长的可能性。基于所提出模型的单光子发射二极管的自洽数值模拟表明,在标准条件下,光子发射速率可以高达100 kcount s?1。与大多数光电器件相反,在500 K下器件温度达到100 Mcount s?1以上时,发射速率稳定增加。这些结果证明了色域作为电动非经典发光体在钻石中的潜力,并为设计和开发用于在室温和更高温度下运行的光量子计算和量子通信网络的单光子源提供了基础。

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