论文标题
由不确定因果序驱动的量子冰箱的实验实现
Experimental Realization of a Quantum Refrigerator Driven by Indefinite Causal Orders
论文作者
论文摘要
无限期的因果秩序(ICO)在最近的量子技术中起着关键作用。在这里,我们通过ICO使用核磁共振系统在核自旋上驱动的量子热力学实验研究。我们意识到两个热元通道的ICO,以表现出该机理的工作原理,并表明可以冷却或加热工作物质,尽管它可以与相同温度的储层进行热接触。此外,我们根据麦克斯韦的恶魔机制构建了ICO冰箱的单个周期,并通过测量从低温储层中提取的工作消耗和热能来评估其性能。与经典的冰箱不同,在高温和低温储层的温度较近的情况下,性能系数(COP)越近,彼此之间的温度彼此相距,ICO冰箱COP始终限制在较小的价值观上,由于将辅助零件投射到偏好的子板上的非单位成功概率。为了增强COP,我们提出并实验证明了基于密度矩阵启动(DME)方法的一般框架,作为ICO制冷的扩展。通过DME方法,观察到COP的增强超过三倍。我们的工作展示了一种非古典热交换的新方法,并为在量子系统上建造量子冰箱的建设铺平了道路。
Indefinite causal order (ICO) is playing a key role in recent quantum technologies. Here, we experimentally study quantum thermodynamics driven by ICO on nuclear spins using the nuclear magnetic resonance system. We realize the ICO of two thermalizing channels to exhibit how the mechanism works, and show that the working substance can be cooled or heated albeit it undergoes thermal contacts with reservoirs of the same temperature. Moreover, we construct a single cycle of the ICO refrigerator based on the Maxwell's demon mechanism, and evaluate its performance by measuring the work consumption and the heat energy extracted from the low-temperature reservoir. Unlike classical refrigerators in which the coefficient of performance (COP) is perversely higher the closer the temperature of the high-temperature and low-temperature reservoirs are to each other, the ICO refrigerator's COP is always bounded to small values due to the non-unit success probability in projecting the ancillary qubit to the preferable subspace. To enhance the COP, we propose and experimentally demonstrate a general framework based on the density matrix exponentiation (DME) approach, as an extension to the ICO refrigeration. The COP is observed to be enhanced by more than three times with the DME approach. Our work demonstrates a new way for non-classical heat exchange, and paves the way towards construction of quantum refrigerators on a quantum system.