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Verlet-like algorithms for Car-Parrinello molecular dynamics with unequal electronic occupations

机译:具有不等电子职业的汽车 - 帕尔诺勒分子动力学的法术等算法

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摘要

The ab initio molecular dynamics simulations of metallic, charged, and electrochemical systems require, in principle, the inclusion of unequally occupied electronic states. In this contribution, the general approach to work with fixed but arbitrary occupations within the Car-Parrinello molecular dynamics scheme is revisited, focusing on the procedure which is required to maintain the orthonormality constraints in the commonly used position-Verlet integrator. Expressions to constrain also the orbital velocities, as it is demanded by a velocity-Verlet integrator, are then derived. The generalized unequal-occupation SHAKE algorithm is compared with the standard procedure for damped dynamics (energy optimization) of systems including fully unoccupied electronic states. In turn, the proposed unequal-occupation RATTLE algorithm is validated by the corresponding microcanonical ensemble simulations. It is shown that only with the proper orthogonalization method, a correct ordering of states and energy conserving dynamics can be achieved. Published by AIP Publishing.
机译:原则上,金属,带电和电化学系统的AB Initio分子动力学模拟需要包含不均占用的电子国家。在这一贡献中,重新审视了在Car-Parrinello分子动力学方案中使用固定但任意职业的一般方法,重点关注维持常用位置 - 法术集成器中的正交约束所需的程序。然后,表达也是由速度 - 法术集成器所要求的轨道速度约束的轨道速度。将广义的不等职业摇算法与系统的阻尼动力学(能量优化)的标准程序进行了比较,包括完全未占用的电子状态。反过来,通过相应的微谐型集合模拟验证了所提出的不等职业拨浪鼓算法。结果表明,只有正确的正交化方法,可以实现各种状态和节能动力学的正确排序。通过AIP发布发布。

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