论文标题
量子运输的二维运输远距离跳跃:屏蔽,定位和扩展的孤立状态
Quantum Transports in Two-Dimensions with Long Range Hopping: Shielding, Localization and the Extended Isolated State
论文作者
论文摘要
我们研究了障碍和屏蔽对二维系统中量子运输的影响,并全部远距离跳跃。在弱混乱中,合作屏蔽表现为与短距离模型相同的完美导电渠道,好像远距离跳跃不存在。随着混乱症的增加,电导的平均和波动大于短距离模型中的平均电力和波动,因为屏蔽有效地破坏了,因此长距离跳跃开始生效。在几个疾病强度的订单中(直到$ \ sim 10^4 $ tim tim tim tim tim tims跳跃),尽管波函数尚未完全扩展,但它们也被强烈阻止被完全定位到一个站点中。每个波函数都在整个样品周围都有几个定位中心,因此导致分形尺寸大于2,并且也大于0,表现出了定位和离域化的杂种特征。尺寸缩放表明,对于足够大的尺寸和无序强度,电导倾向于使用缩放函数$β\ sim 0 $饱和到固定值,这也是典型金属($β> 0 $)和绝缘阶段($β<0 $)之间的边际相。全部耦合将一个孤立但延伸的状态驱逐出远离乐队,由于缺乏反向散射,其运输非常强大。该孤立状态的债券电流图片通过长时间跳跃显示了短路的量子版本。
We investigate the effects of disorder and shielding on quantum transports in a two dimensional system with all-to-all long range hopping. In the weak disorder, cooperative shielding manifests itself as perfect conducting channels identical to those of the short range model, as if the long range hopping does not exist. With increasing disorder, the average and fluctuation of conductance are larger than those in the short range model, since the shielding is effectively broken and therefore long range hopping starts to take effect. Over several orders of disorder strength (until $\sim 10^4$ times of nearest hopping), although the wavefunctions are not fully extended, they are also robustly prevented from being completely localized into a single site. Each wavefunction has several localization centers around the whole sample, thus leading to a fractal dimension remarkably smaller than 2 and also remarkably larger than 0, exhibiting a hybrid feature of localization and delocalization. The size scaling shows that for sufficiently large size and disorder strength, the conductance tends to saturate to a fixed value with the scaling function $β\sim 0$, which is also a marginal phase between the typical metal ($β>0$) and insulating phase ($β<0$). The all-to-all coupling expels one isolated but extended state far out of the band, whose transport is extremely robust against disorder due to absence of backscattering. The bond current picture of this isolated state shows a quantum version of short circuit through long hopping.