论文标题

放松量子网络中的平衡

Relaxation to Equilibrium in a Quantum Network

论文作者

Novotný, Jaroslav, Mariano, Angelo, Pascazio, Saverio, Scardicchio, Antonello, Jex, Igor

论文摘要

量子力学系统平衡的方法是一个与量子力学本身一样古老的话题,但是由于量子技术的应用,最近已经看到了人们的关注激增,包括但不限于量子计算和传感。量子系统接近其长期限制固定状态的机制令人着迷,有时与经典的同行完全不同。在这方面,量子网络代表了感兴趣的介质量子系统。在这种情况下,该图在其顶点编码基本量子系统(例如Qubits),而链接定义了它们之间的相互作用。我们在这里研究了一个完全连接的量子网络的松弛到平衡,该网络与CNOT大门,代表组成量子位之间的相互作用。我们为这些系统的平衡提供了许多结果,包括分析估计。使用最多15-16吨的系统的数值方法检查结果。强调网络的大小控制收敛性。

The approach to equilibrium of quantum mechanical systems is a topic as old as quantum mechanics itself, but has recently seen a surge of interest due to applications in quantum technologies, including, but not limited to, quantum computation and sensing. The mechanisms by which a quantum system approaches its long-time, limiting stationary state are fascinating and, sometimes, quite different from their classical counterparts. In this respect, quantum networks represent a mesoscopic quantum systems of interest. In such a case, the graph encodes the elementary quantum systems (say qubits) at its vertices, while the links define the interactions between them. We study here the relaxation to equilibrium for a fully connected quantum network with CNOT gates representing the interaction between the constituting qubits. We give a number of results for the equilibration in these systems, including analytic estimates. The results are checked using numerical methods for systems with up to 15-16 qubits. It is emphasized in which way the size of the network controls the convergency.

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