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Enhanced Spin-Polarized Transportation Through DNA by Quantum Topological Effect

机译:通过量子拓扑效应通过DNA增强旋转偏振输送

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We report on the nature of the DNA molecule is a promising candidate for molecular Polarization in the Quantum framework of Berry phase factor. Our analysis is based on the polarization of states of various quantum system in lowest Landau level and also the dynamical machine which predicts nonadiabaticity in the neighborhood of the critical point. It is now detected that the low energy excitations states for a completely polarized state of a quantum structure is a soliton where as for unpolarized states soliton excitation are not imaginable. Aimed at incompletely polarized states also skyrmion excitations do not appear to happen as the skyrmionics solitons. We have studied the order of quantum states from the interpretation fact of chiral anomaly segments of DNA molecule and Barry Phase. However, later the series of mutual critical behaviour looks to be very narrow. The physics succeeding the quantum skyrmions is considered here from the understanding point of quantum topological partition. We also observed that skyrmions (soliton) are the pertinent DNA molecule states with filling factor v=1 it is fermion and also accomplished when we have DNA molecule hole conjugate states given by v=1/(2m+1). A hole configuration is pronounced by the compound conjugate of the DNA molecule state, the spin alignment of the molecule and hole state will be reverse to individually added.
机译:我们报告DNA分子的性质是浆果相因子量子框架中的分子极化的有希望的候选者。我们的分析基于最低Landau水平的各种量子系统的偏振,以及预测临界点附近的非等压的动力机器。现在检测到,对于量子结构的完全偏振状态的低能量激发状态是孤子,其中对于非偏振状态孤子激发并不可想而知。针对未完全的偏振态,斯基延兴奋剂似乎并未像臭氧层寡妇一样发生。我们研究了量子态的顺序,从DNA分子和巴里相的手性异常段的解释事实。但是,后来一系列互致的关键行为看起来很窄。这里的物理学在这里考虑了量子拓扑分区的理解点。我们还观察到,臭氧(孤子)是具有填充因子V = 1的相关DNA分子状态,它是FERMION,并且当我们具有V = 1 /(2m + 1)给出的DNA分子孔缀合物时也完成。通过DNA分子状态的复合缀合物发音为孔构型,分子和孔状态的自旋取向将相反,以单独添加。

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