activity
20162024
most citedFinite coupling effects in double quantum dots near equilibrium

18 citations · 52 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph202413 cited

Emergence of steady quantum transport in a superconducting processor

Pengfei Zhang, Yu Gao, Xiansong Xu +29

Non-equilibrium quantum transport is crucial to technological advances ranging from nanoelectronics to thermal management. In essence, it deals with the coherent transfer of energy…

quant-ph2024

Paths towards time evolution with larger neural-network quantum states

Wenxuan Zhang, Bo Xing, Xiansong Xu +1

In recent years, the neural-network quantum states method has been investigated to study the ground state and the time evolution of many-body quantum systems. Here we expand on the…

cond-mat.str-el202411 cited

Real-time Impurity Solver Using Grassmann Time-Evolving Matrix Product Operators

Ruofan Chen, Xiansong Xu, Chu Guo

An emergent and promising tensor-network-based impurity solver is to represent the path integral as a matrix product state, where the bath is analytically integrated out using Feyn…

quant-ph202310 cited

Simulating quantum transport via collisional models on a digital quantum computer

Rebecca Erbanni, Xiansong Xu, Tommaso Demarie +1

Digital quantum computers have the potential to study the dynamics of complex quantum systems. Nonequilibrium open quantum systems are, however, less straightforward to be implemen…

quant-ph2023

A real neural network state for quantum chemistry

Yangjun Wu, Xiansong Xu, Dario Poletti +3

The restricted Boltzmann machine (RBM) has been successfully applied to solve the many-electron Schrdinger equation. In this work we propose a single-layer fully c…

cond-mat.stat-mech201618 cited

Finite coupling effects in double quantum dots near equilibrium

Xiansong Xu, Juzar Thingna, Jian-Sheng Wang

A weak coupling quantum master equation provides reliable steady-state results only in the van Hove limit, i.e., when the system-lead coupling approaches zero. Recently, J. Thingna…