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Flexible magnetic filaments under the influence of external magnetic fields in the limit of infinite dilution

机译:柔性磁丝在无限稀释极限内受外部磁场的影响

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In the present work we use Langevin dynamics computer simulations to understand how the presence of a constant external magnetic field modifies the conformational phase diagram of magnetic filaments in the limit of infinite dilution. We have considered the filaments immersed in either a good (non-sticky filaments) or a poor (Stockmayer polymers) solvent. It has been found that in the presence of an applied field, filaments turn out to be much more susceptible to parameters such as temperature and solvent conditions. Filaments owe this increased susceptibility to the fact that the external magnetic field tends to level the free energy landscape as compared to the zero-field case. The field induces equalization in the free energy of competing conformational states that were separated by large energy differences in the zero-field limit. In this new scenario multistability arises, and manifests itself in the existence of broad regions in the phase diagram where two or more equilibrium configurations coexist. The existence of multistability greatly enhances the possibility of tuning the properties of the filament.
机译:在当前的工作中,我们使用Langevin动力学计算机仿真来了解恒定的外部磁场的存在如何在无限稀释的极限内改变磁丝的构象相图。我们考虑过将长丝浸入良好(非粘性长丝)或不良(Stockmayer聚合物)溶剂中。已经发现,在施加电场的情况下,长丝变得更容易受到诸如温度和溶剂条件之类的参数的影响。细丝的这种增加的敏感性是由于与零场情况相比,外部磁场趋于使自由能态趋于平坦。磁场引起竞争构象态的自由能均等化,这些构象态被零场极限中的大能量差所分隔。在这种新情况下,出现了多重稳定性,并表现为相图中两个或多个平衡构型共存的宽阔区域的存在。多重稳定性的存在极大地提高了调节灯丝性能的可能性。

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