论文标题

量子计算机对量子测量过程的可扩展模拟

Scalable Simulation of Quantum Measurement Process with Quantum Computers

论文作者

Hu, Meng-Jun, Chen, Yanbei, Ma, Yiqiu, Li, Xiang, Liu, Yubao, Zhang, Yong-Sheng, Miao, Haixing

论文摘要

量子信息科学和技术的最新发展,尤其是构建可编程量子计算机,为我们提供了研究量子力学基本方面的新机会。我们提出了量子模型来效仿量子测量过程,其中将量子的量子信息映射到充当测量装置的量子组集合中。一种模型是由单光子检测激励的,另一个模型是由自旋测量的。两种模型都可以扩展以生成Schrödinger猫状状态,并且它们相应的量子电路明确显示。大规模模拟可以在近期量子计算机中实现,而古典计算机不能有效执行相同的任务。由于模型的可扩展性,如果存在,则在量子测量问题中,这种模拟可以帮助探索量子到古典边界。此外,我们生成猫状态的方案可能在量子计算和计量学中具有重要的应用。

Recent development in quantum information sciences and technologies, especially building programmable quantum computers, provide us new opportunities to study fundamental aspects of quantum mechanics. We propose qubit models to emulate the quantum measurement process, in which the quantum information of a qubit is mapped to a collection of qubits acting as the measurement device. One model is motivated by single-photon detection and the other by spin measurement. Both models are scalable to generate Schrödinger cat-like state, and their corresponding quantum circuits are shown explicitly. Large-scale simulations could be realized in near-term quantum computers, while classical computers cannot perform the same task efficiently. Due to the scalability of the models, such simulations can help explore the quantum-to-classical boundary, if exists, in the quantum measurement problem. Besides, our protocol to generate cat states may have important applications in quantum computing and metrology.

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