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Charge fluctuations in the two-dimensional one-component plasma

机译:二维单组分等离子体中的电荷波动

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We study, via computer simulations, the fluctuations in the net electric charge in a two-dimensional, one component plasma (OCP) with uniform background charge density -cp in a region Lambda inside a much larger overall neutral system. Setting e = 1, this is the same as the fluctuations in N-Lambda, the number of mobile particles of charge e. As expected, the distribution of N-Lambda has, for large Lambda, a Gaussian form with a variance which grows only as (k) over cap /delta Lambda/, where /delta Lambda/ is the length or the perimeter of Lambda. The properties of this system depend only on the coupling parameter Gamma = kT, which is the same as the reciprocal temperature in our units. Our simulations show that when the coupling parameter Gamma increases, (k) over cap(Gamma) decreases to an asymptotic value (k) over cap(infinity) similar to (k) over cap(2)/2 which is equal (or very close) to that obtained for the corresponding variance of particles on a rigid triangular lattice. Thus, for large Gamma, the characteristic length xi(L) = 2 (k) over cap/p associated with charge fluctuations behaves very differently From that of the Debye length, xi(D) similar to 1/root Gamma, which it approaches as Gamma --> 0. The pair correlation function of the OCP is also studied. [References: 37]
机译:我们通过计算机模拟研究了在更大的整体中性系统内部的Lambda区域中具有均匀背景电荷密度-cp的二维,一成分等离子体(OCP)中净电荷的波动。设置e = 1,这与N-Lambda(电荷的可移动粒子数e)的波动相同。正如预期的那样,对于大的Lambda,N-Lambda的分布具有高斯形式,其方差仅在上限/ delta Lambda /上以(k)增长,其中/ delta Lambda /是Lambda的长度或周长。该系统的特性仅取决于耦合参数Gamma = kT,该参数与我们单位中的倒数温度相同。我们的仿真表明,当耦合参数Gamma增大时,在cap(Gamma)上的(k)减小到在cap(infinity)上的渐近值(k)类似于在cap(2)/ 2上的(k)相等(或非常大)接近于刚性三角晶格上相应的粒子方差获得的值。因此,对于较大的Gamma,与电荷波动相关的cap / p上的特征长度xi(L)= 2(k)的行为与近似于1 /根Gamma的德拜长度xi(D)的行为截然不同如Gamma->0。还研究了OCP的对相关函数。 [参考:37]

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