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A semiconductor source of triggered entangled photon pairs

机译:触发纠缠光子对的半导体源

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Entangled photon pairs are an important resource in quantum optics(1), and are essential for quantum information(2) applications such as quantum key distribution(3,4) and controlled quantum logic operations(5). The radiative decay of biexcitons - that is, states consisting of two bound electron - hole pairs - in a quantum dot has been proposed as a source of triggered polarization-entangled photon pairs(6). To date, however, experiments have indicated that a splitting of the intermediate exciton energy yields only classically correlated emission(7-9). Here we demonstrate triggered photon pair emission from single quantum dots suggestive of polarization entanglement. We achieve this by tuning the splitting to zero, through either application of an in-plane magnetic field or careful control of growth conditions. Entangled photon pairs generated 'on demand' have significant fundamental advantages over other schemes(10-13), which can suffer from multiple pair emission, or require post-selection techniques or the use of photon-number discriminating detectors. Furthermore, control over the pair generation time is essential for scaling many quantum information schemes beyond a few gates. Our results suggest that a triggered entangled photon pair source could be implemented by a simple semiconductor light-emitting diode(14).
机译:纠缠光子对是量子光学中的重要资源(1),对于量子信息(2)应用(例如量子密钥分配(3,4)和受控量子逻辑运算(5))必不可少。量子点中双激子的辐射衰减-即由两个束缚的电子-空穴对组成的状态-已被提出作为触发的偏振纠缠光子对的来源(6)。然而,迄今为止,实验表明,中间激子能量的分裂仅产生经典相关的发射(7-9)。在这里,我们证明了来自单量子点的极化光纠缠触发光子对发射。我们可以通过应用面内磁场或仔细控制生长条件,将分裂调整为零来实现此目的。 ``按需''生成的纠缠光子对具有比其他方案(10-13)显着的基本优势,其他方案可能会遭受多对发射,或者需要后选择技术或使用光子数区分检测器。此外,对成对生成时间的控制对于将许多量子信息方案扩展到几个门之外至关重要。我们的结果表明,可以通过简单的半导体发光二极管来实现触发纠缠光子对源(14)。

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