學術活動
量子材料
NORG幫助免除在DFT+DMFT電子結構計算中的負符号問題
作者:盧仲毅浏覽次數:
主講人: 盧仲毅
地點: beat365物理樓,西563會議室
時間: 2020年11月18日 (周三)下午4:00
主持 聯系人: 王健<jianwangphysics@pku.edu.cn>
主講人簡介: 盧仲毅,中國人民大學物理系教授,主要從事凝聚态物質的電子結構研究和計算方法發展,在鐵基超導和量子多體理論等研究方面取得了一批有原創性的成果:提出了鐵基超導的反鐵磁超交換作用機理,正确預言了母體的反鐵磁半金屬特性,确認了FeTe和K2Fe3Se4的反鐵磁長程序及電子結構;明确了鐵磁金屬層中量子阱态的共振隧穿等輸運性質;提出了自然軌道重正化群方法,并應用于多自由度的量子雜質系統研究;用多體場論方法研究了幾種自旋鍊系統的奇異特性。2007年獲國家傑出青年基金資助,2012年聘為教育部長江學者特聘教授,2015年獲教育部自然科學一等獎,同年獲中國物理學會葉企孫物理獎,2019年獲得國家自然科學獎二等獎。

Abstract:

There are many novel quantum phenomena in strongly correlated electronic materials. How to understand and characterize them has always been one of the central topics in condensed matter physics. The DFT+DMFT electronic structure calculation method is considered to be the most powerful and promising method for studying strongly correlated electronic materials, which combines the first-principles electronic structure calculation based on the density functional theory (DFT) and the dynamical mean field theory (DMFT). Nevertheless, the DFT+DMFT calculation method now suffers the sign problem with its quantum Monte Carlo impurity solver, which seriously hinders the development and application of DFT+DMFT. On the other hand, the quantum renormalization group (RG) procedure is one of the most important and accurate approaches for studying interacting many-electron correlated systems, upon which we propose a new concept in the framework of natural orbitals so that we can generalize the RG into general orbital space, namely natural orbitals renormalization group (NORG). We show that the NORG takes a polynomial rather than exponential computational cost in the number of electron bath sites to solve the low-energy states of a quantum impurity model. Moreover, the NORG can work on a quantum impurity model with any lattice topological structure. Actually, the effectiveness of the NORG is basically irrespective of a model's topological structure. Thus, the NORG is naturally appropriate for studying quantum cluster-impurity model. This makes the NORG be a natural impurity solver to dynamical mean field theory.