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Quantum fluctuations in a scale-free network-connected Ising system

机译:无标度网络连接的Ising系统中的量子涨落

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We study the effect of quantum fluctuations in an Ising spin system on a scale-free network of degree exponent gamma > 5 using a quantum Monte Carlo simulation technique. In our model, one can adjust the magnitude of the magnetic field perpendicular to the Ising spin direction and can therefore control the strength of quantum fluctuations for each spin. Our numerical analysis shows that quantum fluctuations reduce the transition temperature T-c of the ferromagnetic-paramagnetic phase transition. However, the phase transition belongs to the same mean-field type universality class both with and without the quantum fluctuations. We also study the role of hubs by turning on the quantum fluctuations exclusively at the nodes with the most links. When only a small number of hub spins fluctuate quantum mechanically, T-c decreases with increasing magnetic field until it saturates at high fields. This effect becomes stronger as the number of hub spins increases. In contrast, quantum fluctuations at the same number of "non-hub" spins do not affect T-c. This implies that the hubs play an important role in maintaining order in the whole network.
机译:我们使用量子蒙特卡罗模拟技术研究了Ising自旋系统中的量子涨落对指数级伽马> 5的无标度网络的影响。在我们的模型中,可以调整垂直于Ising自旋方向的磁场强度,因此可以控制每次自旋的量子涨落强度。我们的数值分析表明,量子涨落降低了铁磁-顺磁相变的转变温度T-c。但是,无论有无量子涨落,相变都属于相同的均场类型通用性类别。我们还通过仅在链接最多的节点上打开量子涨落来研究集线器的作用。当只有少量的毂自旋机械地波动量子时,T-c随磁场的增加而减小,直到在高磁场中达到饱和为止。随着轮毂旋转次数的增加,此效果会增强。相反,在相同数量的“非中心”自旋下的量子涨落不会影响T-c。这意味着集线器在维护整个网络的秩序中起着重要作用。

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