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Statistical mechanics of columnar DNA assemblies

机译:柱状DNA装配体的统计力学

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Many physical systems can be mapped onto solved or "solvable" models of magnetism. In this work, we have mapped the statistical mechanics of columnar phases of ideally helical rigid DNA-subject to the earlier found unusual, frustrated pair potential(A.A. Kornyshev, S. Leikin,J. Chem. Phys. 107, 3656 (1997)) - onto an exotic, unknown variant of the XY model on a fixed or restructurable lattice. Here, the role of the "spin" is played by the azimuthal orientation of the molecules. We have solved this model using a Hartree-Fock approximation, ground-state calculations, and finite-temperature Monte Carlo simulations. We have found peculiar spin order transitions, which may also be accompanied by positional restructuring, from hexagonal to rhombohedric lattices. Some of these have been experimentally observed in dense columnar aggregates. Note that DNA columnar phases are of great interest in biophysical research,not only because they are a useful in vitro tool for the study of DNA condensation,but also since these structures have been detected in living matter. Within the approximations made, our study provides insight into the statistical mechanics of these systems.
机译:许多物理系统可以映射到已解决或“可解决”的磁性模型上。在这项工作中,我们将理想的螺旋形刚性DNA的柱状相的统计力学映射到了较早发现的异常,受挫的配对电位(AA Kornyshev,S. Leikin,J. Chem。Phys。107,3656(1997))。 -在固定或可重构晶格上的XY模型的奇异,未知变体上。在此,“自旋”的作用是通过分子的方位角取向来实现的。我们已经使用Hartree-Fock近似,基态计算和有限温度蒙特卡洛模拟解决了该模型。我们已经发现了特殊的自旋顺序跃迁,也可能伴随着从六方晶格到菱形晶格的位置重组。在稠密的柱状聚集体中已通过实验观察到其中一些。请注意,DNA柱状相在生物物理研究中非常受关注,不仅因为它们是用于研究DNA缩合的有用的体外工具,而且还因为已经在生物中检测到了这些结构。在得出的近似值范围内,我们的研究提供了对这些系统的统计力学的见解。

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