activity
20132020
most citedHierarchical equations of motion for impurity solver in dynamical mean-field theory

52 citations · 88 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2020

Tracking the electronic oscillation in molecule with tunneling microscopy

Rulin Wang, Fuzhen Bi, Wencai Lu +2

Visualizing and controlling electron dynamics over femtosecond timescale play a key role in the design of next-generation electronic devices. Using simulations, we demonstrate the…

cond-mat.mtrl-sci2015★ 1 cited

Quantum Mechanical Modeling of Nanoscale Light Emitting Diodes

Rulin Wang, Yu Zhang, Fuzhen Bi +2

Understanding of the electroluminescence (EL) mechanism in optoelectronic devices is important for further optimization of their efficiency and effectiveness. Here, a quantum mecha…

cond-mat.str-el2013★ 52 cited

Hierarchical equations of motion for impurity solver in dynamical mean-field theory

Dong Hou, Rulin Wang, Xiao Zheng +3

A nonperturbative quantum impurity solver is proposed based on a formally exact hierarchical equations of motion (HEOM) formalism for open quantum systems. It leads to quantitative…

physics.chem-ph2013★ 34 cited

Time-dependent density-functional theory for real-time electronic dynamics on material surfaces

Rulin Wang, Dong Hou, Xiao Zheng

The real-time electronic dynamics on material surfaces is critically important to a variety of applications. However, their simulations have remained challenging for conventional m…

cond-mat.str-el2013★ 1 cited

Thermopower of few-electron quantum dots with Kondo correlations

LvZhou Ye, Dong Hou, Rulin Wang +2

The thermopower of few-electron quantum dots with Kondo correlations is investigated via a hierarchial equations of motion approach. The thermopower is determined by the line shape…