首页> 外文会议>NATO advanced research workshop on new kinds of phase transitions: Transformations in disordered substances >LOW TEMPERATURE PROPERTIES OF A SPIN MODEL WITH VARYING FERROMAGNETIC AND ANTIFERROMAGNETIC COUPLINGS
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LOW TEMPERATURE PROPERTIES OF A SPIN MODEL WITH VARYING FERROMAGNETIC AND ANTIFERROMAGNETIC COUPLINGS

机译:具有不同铁磁和反铁磁联轴器的旋转模型的低温性能

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We briefly review Monte Carlo results for low temperature properties of a spin model with varying ferromagnetic and antiferromagnetic nearest-neighbor coupling constants. The fraction of antiferromagnetic coupling constants is R; R = 0 and R = 0.5 are corresponding to a ferromagnetic Ising model and a spin glass model, respectively. In 1999, Hartmann found that as R increases from 0 to 0.5, the system has a crossover from ferromagnetic behavior to spin glass behavior at R_c = 0.222 +- 0.005. More recently, Lin, Hu, and Hansmann found that for R near and smaller than R_c, there are some protein-like ground states, which could be "designed" by many realizations of coupling constants. This leads to the idea of "spin protein" sitting between a fer-romagnet and a spin glass.
机译:我们简要介绍了蒙特卡罗的结果,用于旋转模型的低温性能,具有不同的铁磁性和反铁磁最近邻耦合常数。反铁磁耦合常数的分数是r; r = 0和r = 0.5分别对应于铁磁ising模型和旋转玻璃模型。 1999年,Hartmann发现,由于R从0增加到0.5,系统具有来自铁磁行为的交叉,在R_C = 0.222 + - 0.005的旋转玻璃行为。最近,林,胡和汉斯曼发现,对于近方而小于R_C,存在一些类似蛋白质的地面状态,其可以通过许多耦合常数的实现“设计”。这导致坐在FER-ROMAGNET和旋转玻璃之间的“旋转蛋白”的想法。

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