论文标题
通过单个量子系统处理量子古典混合信息处理
Quantum-Classical Hybrid Information Processing via a Single Quantum System
论文作者
论文摘要
基于量子的通信中的当前技术将量子数据的新集成与用于混合处理的经典数据一起。但是,这些技术的框架仅限于单个经典或量子任务,这限制了它们在近期应用中的灵活性。我们建议在需要经典和量子输入的计算任务中利用量子储存器处理器来利用量子动力学。该模拟处理器组成了一个量子点网络,其中量子数据被入射到网络中,并且经典数据是通过连贯的字段激发网络的。我们执行量子断层扫描和经典通道非线性均衡的多任务应用。有趣的是,可以通过对经典数据的反馈控制以闭环方式进行层析成像。因此,如果经典输入来自动态系统,则将该系统嵌入闭环中,即使访问了对外部经典输入的访问也被中断。最后,我们证明准备量子去极化通道是一种用于量子数据处理的新型量子机学习技术。
Current technologies in quantum-based communications bring a new integration of quantum data with classical data for hybrid processing. However, the frameworks of these technologies are restricted to a single classical or quantum task, which limits their flexibility in near-term applications. We propose a quantum reservoir processor to harness quantum dynamics in computational tasks requiring both classical and quantum inputs. This analog processor comprises a network of quantum dots in which quantum data is incident to the network and classical data is encoded via a coherent field exciting the network. We perform a multitasking application of quantum tomography and nonlinear equalization of classical channels. Interestingly, the tomography can be performed in a closed-loop manner via the feedback control of classical data. Therefore, if the classical input comes from a dynamical system, embedding this system in a closed loop enables hybrid processing even if access to the external classical input is interrupted. Finally, we demonstrate preparing quantum depolarizing channels as a novel quantum machine learning technique for quantum data processing.