化学
嵌入
量子化学
量子
多参考配置交互
缩放比例
统计物理学
领域(数学)
分子
完整活动空间
量子力学
碎片(计算)
密度矩阵
量子化学
计算化学
纳米技术
量子动力学
空格(标点符号)
化学空间
电子结构
量子模拟器
物理
作者
Shreya Verma,Abhishek Mitra,Qiaohong Wang,Ruhee D’cunha,Bhavnesh Jangid,Matthew R. Hennefarth,Valay Agarawal,Leon Otis,Soumi Haldar,Matthew R. Hermes,Laura Gagliardi
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2026-01-02
卷期号:126 (1): 184-203
被引量:1
标识
DOI:10.1021/acs.chemrev.5c00486
摘要
One of the primary challenges in quantum chemistry is the accurate modeling of strong electron correlation. While multireference methods effectively capture such correlation, their steep scaling with system size prohibits their application to large molecules and extended materials. Quantum embedding offers a promising solution by partitioning complex systems into manageable subsystems. In this Review, we highlight recent advances in multireference density matrix embedding and localized active space self-consistent field approaches for complex molecules and extended materials. We discuss both classical implementations and the emerging potential of these methods on quantum computers. By extending classical embedding concepts to the quantum landscape, these algorithms have the potential to expand the reach of multireference methods in quantum chemistry and materials.
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