论文标题
纠缠辅助吸收光谱
Entanglement-Assisted Absorption Spectroscopy
论文作者
论文摘要
光谱是探测材料,化学和生物样品的特性的重要工具。我们设计了一个实用的发射器接收器系统,该系统利用纠缠以在基于经典来源的所有光谱方案中获得可证明的量子优势。为了探测吸收光谱,以不同频率模式之间的透射率模式建模,我们在两种模式的挤压真空状态下采用了宽带信号形成对。在接收器侧,我们在光学参数放大后应用光调整。最后,我们对测量结果进行了最大的样式决策测试,比在各个示例中的最佳经典系统(包括“葡萄酒味”和“药物测试”,在考虑实际分子的情况下,实现了降低级别的误差概率。在检测吸收线的存在时,我们的量子方案达到了量子力学允许的最佳性能。我们系统中的量子优势是可靠的噪声和损失,这使得近期的实验演示成为可能。
Spectroscopy is an important tool for probing the properties of materials, chemicals and biological samples. We design a practical transmitter-receiver system that exploits entanglement to achieve a provable quantum advantage over all spectroscopic schemes based on classical sources. To probe the absorption spectra, modelled as pattern of transmissivities among different frequency modes, we employ broad-band signal-idler pairs in two-mode squeezed vacuum states. At the receiver side, we apply photodetection after optical parametric amplification. Finally, we perform a maximal-likehihood decision test on the measurement results, achieving orders-of-magnitude-lower error probability than the optimum classical systems in various examples, including `wine-tasting' and `drug-testing' where real molecules are considered. In detecting the presence of an absorption line, our quantum scheme achieves the optimum performance allowed by quantum mechanics. The quantum advantage in our system is robust against noise and loss, which makes near-term experimental demonstration possible.