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A rotationally invariant approach based on Gutzwiller wave function for correlated electron systems.

Zhuo YeFeng ZhangYimei FangHan ZhangShunqing WuWen-Cai LuYong-Xin YaoCai-Zhuang WangKai-Ming Ho
Published in: Journal of physics. Condensed matter : an Institute of Physics journal (2022)
We introduce a rotationally invariant approach combined with the Gutzwiller conjugate gradient minimization method to study correlated electron systems. In the approach, the Gutzwiller projector is parametrized based on the number of electrons occupying the onsite orbitals instead of the onsite configurations. The approach efficiently groups the onsite orbitals according to their symmetry and greatly reduces the computational complexity, which yields a speedup of20∼50×in the minimal basis energy calculation of dimers. The computationally efficient approach promotes more accurate calculations beyond the minimal basis that is inapplicable in the original approach. A large-basis energy calculation of F 2 demonstrates favorable agreements with standard quantum-chemical calculations Bytautas et al (2007 J. Chem. Phys. 127 164317).
Keyphrases
  • density functional theory
  • molecular dynamics
  • monte carlo
  • molecular dynamics simulations
  • high resolution
  • cancer therapy
  • electron microscopy
  • drug delivery