首页> 外文期刊>Computer physics communications >The PSEUDODOJO: Training and grading a 85 element optimized norm-conserving pseudopotential table
【24h】

The PSEUDODOJO: Training and grading a 85 element optimized norm-conserving pseudopotential table

机译:Pseudodojo:培训和分级A 85元素优化的常态伪函数表

获取原文
获取原文并翻译 | 示例
           

摘要

First-principles calculations in crystalline structures are often performed with a planewave basis set. To make the number of basis functions tractable two approximations are usually introduced: core electrons are frozen and the diverging Coulomb potential near the nucleus is replaced by a smoother expression. The norm-conserving pseudopotential was the first successful method to apply these approximations in a fully ab initio way. Later on, more efficient and more exact approaches were developed based on the ultrasoft and the projector augmented wave formalisms. These formalisms are however more complex and developing new features in these frameworks is usually more difficult than in the norm conserving framework. Most of the existing tables of norm-conserving pseudopotentials, generated long ago, do not include the latest developments, are not systematically tested or are not designed primarily for high precision. In this paper, we present our PSEUDODOJO framework for developing and testing full tables of pseudopotentials, and demonstrate it with a new table generated with the ONCVPSP approach. The PSEUDODOJO is an open source project, building on the ABIPY package, for developing and systematically testing pseudopotentials. At present it contains 7 different batteries of tests executed with ABINIT, which are performed as a function of the energy cutoff. The results of these tests are then used to provide hints for the energy cutoff for actual production calculations. Our final set contains 141 pseudopotentials split into a standard and a stringent accuracy table. In total around 70,000 calculations were performed to test the pseudopotentials. The process of developing the final table led to new insights into the effects of both the core-valence partitioning and the non-linear core corrections on the stability, convergence, and transferability of norm-conserving pseudopotentials. The PSEUDODOJO hence provides a set of pseudopotentials and general purpose tools for
机译:晶体结构的第一原理计算通常用平面波组进行。为了使基本函数的数量易于介绍,通常介绍两个近似:核心电子被冻结,并且核附近的辐射库仑电位被更顺畅的表达所取代。标准节约伪能量是以完全AB INITIO方式应用这些近似的第一种成功方法。后来,基于Ultrasoft和投影机增强波形主义的更高效和更精确的方法。然而,这些形式主义更复杂并且在这些框架中开发新功能通常比通常在规范节约框架中更困难。大多数现有的常规节约伪能源表,不久地生成,不包括最新的发展,而不是系统地测试或不是主要用于高精度的设计。在本文中,我们展示了我们的Pseudodojo框架,用于开发和测试伪软件的完整表,并用oncvpsp方法生成的新表来证明它。 Pseudodojo是一个开源项目,在阶级包装上建造,用于开发和系统地测试伪能源。目前,它包含有7个不同的测试电池,该测试是由Abinit执行的,其作为能量截止的函数进行。然后使用这些测试的结果为实际生产计算提供用于能量截止的提示。我们的最终组包含141个伪能量,分为标准和严格的精度表。总共进行大约70,000个计算以测试伪能量。开发最终表的过程导致了核心价分配的效果和非线性核心校正对稳定性,收敛性和规范伪能源的可转换性的新见解。因此,Pseudodojo提供了一组伪能源和通用工具

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号