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Winding up a finite size holographic superconducting ring beyond Kibble-Zurek mechanism

机译:卷绕一个超出Kibble-Zurek机构的有限尺寸全息超导环

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We studied the dynamics of the order parameter and the winding numbers W formation of a quenched normal-to-superconductor state phase transition in a finite size holographic superconducting ring. There is a critical circumference C ? below which no winding number will be formed; then, C ? can be treated as the Kibble-Zurek mechanism (KZM) correlation length ξ , which is proportional to the fourth root of its quench rate τ Q , which is also the average size of independent pieces formed after a quench. When the circumference C ≥ 10 ξ , the key KZM scaling between the average value of absolute winding number and the quench rate ? | W | ? ∝ τ Q ? 1 / 8 is observed. At smaller sizes, the universal scaling will be modified; there are two regions. The middle size 5 ξ < C < 10 ξ result ? | W | ? ∝ τ Q ? 1 / 5 agrees with a finite size experiment observation, while at ξ < C ≤ 5 ξ , the average value of absolute winding number equals the variance of winding number, and there is no exponential relationship between the quench rate and the average value of absolute winding number. The winding number statistics can be derived from a trinomial distribution with N ? = C / ( f ξ ) trials, and f ? 5 is the average number of adjacent pieces that are effectively correlated.
机译:我们研究了订单参数的动力学和绕组数W形成有限尺寸全息超导环中淬火的常向超导状态相变。有一个关键的圆周c?下面没有形成绕组数量;然后,C?可以被视为kibble-zurek机构(KZM)相关长度ξ,其与其淬火速率τq的第四根部成比例,这也是淬火后形成的独立件的平均尺寸。当圆周c≥10‰时,关键Kzm缩放在绝对绕组数的平均值和淬火率之间? | W |还ατQ?观察到1/8。在较小的尺寸下,通用缩放将被修改;有两个地区。中间尺寸5ξ

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