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Conclusive quantum steering with superconducting transition-edge sensors

机译:具有超导过渡边缘传感器的结论性量子转向

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摘要

Quantum steering allows two parties to verify shared entanglement even if one measurement device is untrusted. A conclusive demonstration of steering through the violation of a steering inequality is of considerable fundamental interest and opens up applications in quantum communication. To date, all experimental tests with single-photon states have relied on post selection, allowing untrusted devices to cheat by hiding unfavourable events in losses. Here we close this 'detection loophole' by combining a highly efficient source of entangled photon pairs with superconducting transition-edge sensors. We achieve an unprecedented ∼62% conditional detection efficiency of entangled photons and violate a steering inequality with the minimal number of measurement settings by 48 s.d.s. Our results provide a clear path to practical applications of steering and to a photonic loophole-free Bell test.
机译:即使一台测量设备不受信任,量子控制也可让两方验证共享纠缠。通过克服转向不等式来进行转向的结论性展示具有相当大的基本意义,并为量子通信打开了应用之门。迄今为止,所有具有单光子状态的实验测试都依赖于后期选择,从而使不受信任的设备通过将不利事件隐藏在损失中来作弊。在这里,我们通过将高效的纠缠光子对源与超导过渡边缘传感器相结合来关闭“检测漏洞”。我们实现了前所未有的〜62%的纠缠光子条件检测效率,并且以48 s.d.s的最小测量设置数克服了转向不等式。我们的结果为转向的实际应用和无光子漏洞的贝尔测试提供了一条清晰的道路。

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