领域
量子化学
桥接(联网)
原子轨道
福克空间
密度泛函理论
福克矩阵
固态
电子结构
原子轨道的线性组合
统计物理学
理论物理学
化学
纳米技术
量子力学
物理
计算机科学
材料科学
工程物理
分子
基准集
电子
超分子化学
法学
计算机网络
政治学
作者
Alessandro Erba,Jacques K. Desmarais,Silvia Casassa,Bartolomeo Civalleri,Lorenzo Donà,Ian J. Bush,Barry G. Searle,Lorenzo Maschio,Loredana Edith-Daga,Alessandro Cossard,Chiara Ribaldone,Eleonora Ascrizzi,Naiara L. Marana,Jean‐Pierre Flament,Bernard Kirtman
标识
DOI:10.1021/acs.jctc.2c00958
摘要
The Crystal program for quantum-mechanical simulations of materials has been bridging the realm of molecular quantum chemistry to the realm of solid state physics for many years, since its first public version released back in 1988. This peculiarity stems from the use of atom-centered basis functions within a linear combination of atomic orbitals (LCAO) approach and from the corresponding efficiency in the evaluation of the exact Fock exchange series. In particular, this has led to the implementation of a rich variety of hybrid density functional approximations since 1998. Nowadays, it is acknowledged by a broad community of solid state chemists and physicists that the inclusion of a fraction of Fock exchange in the exchange-correlation potential of the density functional theory is key to a better description of many properties of materials (electronic, magnetic, mechanical, spintronic, lattice-dynamical, etc.). Here, the main developments made to the program in the last five years (i.e., since the previous release, Crystal17) are presented and some of their most noteworthy applications reviewed.
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