學術活動
凝聚态
【凝聚态物理-beat365論壇 2023年第9期(總561期)】Numerically accurate all-Electron GW approach to electronic band structure of materials
浏覽次數:
主講人: 蔣鴻 研究員 (beat365化學與分子工程學院)
地點: 物理大樓西樓202報告廳
時間: 2023年4月20日(星期四) 15:00-16:30
主持 聯系人: 呂勁 jinglu@pku.edu.cn
主講人簡介: 1998年獲得beat365理學學士學位, 2003年獲得beat365物理化學專業理學博士學位。科研經曆包括2001年-2004年美國杜克大學訪問學生/博士後,2004年-2006年德國法蘭克福大學博士後,2006年-2009年德國柏林弗裡茲-哈勃研究所博士後。2008年底入職beat365化學與分子工程學院,現為研究員(長聘副教授)。主要研究興趣是發展針對材料體系的電子結構理論方法和計算程序,并将其應用于重要新材料的理論研究。

    Many-body perturbation theory in the GW approximation has been regarded as the most accurate and robust first-principles approach to electronic band structure of insulating materials. In this talk I will address the challenges of numerically accurate GW calculation based on our recent systematic investigation of the effects of including high-energy local orbitals (HLOs) in the linearized augmented plane waves (LAPW)-based all-electron GW calculations for both weakly and strongly correlated materials [1-5]. We found that both the accuracy of unoccupied states and the completeness in the summation of states are crucial for numerically accurate GW calculations, which can provide important clues to the construction of more accurate pseudopotentials and the development of new approaches that eliminate or reduce the efforts necessary for the summation of unoccupied states.

[1] H. Jiang et al. Computer Phys. Commun.,2013, 184:348.

[2] H. Jiang and P. Blaha, Phys. Rev. B, 2016, 93:115203.

[3] M.-Y. Zhang and H. Jiang, Phys. Rev. B. 2019, 100: 205123.

[4] H. Jiang, Phys. Rev. B, 2018, 97:245132.

[5] M.-Y. Zhang and H. Jiang, Frontiers of Chemistry, 2021, 9, 747972.