Institute of Theoretical Physics, Lanzhou University, Lanzhou 730000, China.
J Chem Phys. 2010 Dec 21;133(23):234508. doi: 10.1063/1.3506875.
We studied the melting behavior of two-dimensional colloidal crystals with a Yukawa pair potential by Brownian dynamics simulations. The melting follows the Kosterlitz-Thouless-Halperin-Nelson-Young (KTHNY) scenario with two continuous phase transitions and a middle hexatic phase. The two phase-transition points were accurately identified from the divergence of the translational and orientational susceptibilities. Configurational temperatures were employed to monitor the equilibrium of the overdamped system and the strongest temperature fluctuation was observed in the hexatic phase. The inherent structure obtained by rapid quenching exhibits three different behaviors in the solid, hexatic, and liquid phases. The measured core energy of the free dislocations, E(c) = 7.81 ± 0.91 k(B)T, is larger than the critical value of 2.84 k(B)T, which consistently supports the KTHNY melting scenario.
我们通过布朗动力学模拟研究了具有 Yukawa 对势的二维胶体晶体的熔融行为。熔融过程遵循 Kosterlitz-Thouless-Halperin-Nelson-Young(KTHNY)情景,具有两个连续的相转变和一个中间六方相。通过平移和取向磁化率的发散,准确地确定了两个相转变点。构形温度用于监测过阻尼系统的平衡,在六方相中观察到最强的温度波动。通过快速淬火获得的固有结构在固体、六方和液体相中有三种不同的行为。测量得到的自由位错的核心能量 E(c) = 7.81 ± 0.91 k(B)T,大于 2.84 k(B)T 的临界值,这一致支持 KTHNY 熔融情景。