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SEARCH OF THE GROUND STATE(S) OF SPIN GLASSES AND QUANTUM ANNEALING

机译:搜索自旋玻璃的地面状态和量子退火

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We review our earlier studies on the order parameter distribution of the quantum Sherrington-Kirkpatrick (SK) model. Through Monte Carlo technique, we investigate the behavior of the order parameter distribution at finite temperatures. The zero temperature study of the spin glass order parameter distribution is made by the exact diagonalization method. We find in low-temperature (high-transverse-field) spin glass region, the tail (extended up to zero value of order parameter) and width of the order parameter distribution become zero in thermodynamic limit. Such observations clearly suggest the existence of a low-temperature (high-transverse-field) ergodic region. We also find in high-temperature (low-transverse-field) spin glass phase the order parameter distribution has nonzero value for all values of the order parameter even in infinite system size limit, which essentially indicates the nonergodic behavior of the system. We study the annealing dynamics by the paths which pass through both ergodic and nonergodic spin glass regions. We find the average annealing time becomes system size independent for the paths which pass through the quantum-fluctuation-dominated ergodic spin glass region. In contrast to that, the annealing time becomes strongly system size dependent for annealing down through the classical-fluctuation-dominated nonergodic spin glass region. We investigate the behavior of the spin autocorrelation in the spin glass phase. We observe that the decay rate of autocorrelation towards its equilibrium value is much faster in the ergodic region with respect to the nonergodic region of the spin glass phase.
机译:我们回顾了我们对量子Sherrington-Kirkpatrick(SK)模型的阶数参数分布的研究。通过蒙特卡洛技术,我们研究了有限温度下阶参数分布的行为。通过精确的对角化方法对自旋玻璃有序参数分布进行了零温度研究。我们发现在低温(高横向场)自旋玻璃区域中,尾部(延伸至阶参数的零值)和阶参数分布的宽度在热力学极限中变为零。这些观察清楚地表明存在低温(高横向场)遍历区域。我们还发现,即使在无限大的系统尺寸限制下,在高温(低横向场)旋转玻璃相中,阶数参数分布对于阶数参数的所有值也都为非零值,这实质上表明了系统的非遍历性。我们通过遍历遍历和非遍历旋转玻璃区域的路径研究退火动力学。我们发现,平均退火时间成为系统尺寸的独立于通过量子涨落为主的遍历旋转玻璃区域的路径。与此相反,退火时间变得强烈取决于通过经典波动主导的非遍历旋转玻璃区域进行退火的系统尺寸。我们研究了自旋玻璃相中自旋自相关的行为。我们观察到,相对于自旋玻璃相的非遍历区域,遍历区域中自相关向其平衡值的衰减速率要快得多。

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  • 来源
    《Science and Culture》 |2019年第6期|182-191|共10页
  • 作者

    SUDIP MUKHERJEE;

  • 作者单位

    Barasat Government College, Barasat, Kolkata 700124, India., Condensed Matter Physics Division, Saha Institute of Nuclear Physics, 1/AF Bidhannagar, Kolkata 700064, India;

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