Laboratoire de Photonique et de Nanostructures, CNRS, UPR20, Route de Nozay, 91460 Marcoussis, France.
Phys Rev Lett. 2013 Jun 21;110(25):250501. doi: 10.1103/PhysRevLett.110.250501. Epub 2013 Jun 17.
We demonstrate the unambiguous entangling operation of a photonic quantum-logic gate driven by an ultrabright solid-state single-photon source. Indistinguishable single photons emitted by a single semiconductor quantum dot in a micropillar optical cavity are used as target and control qubits. For a source brightness of 0.56 photons per pulse, the measured truth table has an overlap with the ideal case of 68.4±0.5%, increasing to 73.0±1.6% for a source brightness of 0.17 photons per pulse. The gate is entangling: At a source brightness of 0.48, the Bell-state fidelity is above the entangling threshold of 50% and reaches 71.0±3.6% for a source brightness of 0.15.
我们展示了由超亮固态单光子源驱动的光子量子逻辑门的明确纠缠操作。微柱光学腔中单半导体量子点发射的不可分辨的单光子被用作目标和控制量子位。对于源亮度为 0.56 个光子/脉冲,测量的真值表与理想情况的重叠度为 68.4±0.5%,而对于源亮度为 0.17 个光子/脉冲,重叠度增加到 73.0±1.6%。该门是纠缠的:在源亮度为 0.48 时,贝尔态保真度超过 50%的纠缠阈值,达到 0.15 时为 71.0±3.6%。