From the 1 of 10 linked papers with an AI index.
10 papers
First-principles cumulant approach to the vibronic structure of spin defects
Jinsoo Park, Yu Jin, Arpan Kundu +2
Color centers in wide-band-gap semiconductors are leading platforms for solid-state quantum technologies, yet a quantitative description of their vibronic structure has remained el…
Analytical Forces from the Bethe-Salpeter Equation for Large-Scale Excited-State Relaxation
Yu Jin, Victor Wen-zhe Yu, Marco Govoni +1
We present an efficient plane-wave implementation of analytical nuclear forces for electronic excited states described by the Bethe-Salpeter equation (BSE). The formulation combine…
The WEST code for large-scale excited-state materials simulations
Victor Wen-zhe Yu, Siyuan Chen, Yu Jin +5
The paper introduces WEST, an open‑source plane‑wave pseudopotential code that enables large‑scale excited‑state simulations of materials using GW, Bethe‑Salpeter, and TDDFT method…
Towards dislocation-driven quantum interconnects
Cunzhi Zhang, Victor Wen-zhe Yu, Yu Jin +4
A central problem in the deployment of quantum technologies is the realization of robust architectures for quantum interconnects. We propose to engineer interconnects in semiconduc…
Advances in Quantum Defect Embedding Theory
Siyuan Chen, Victor Wen-zhe Yu, Yu Jin +2
Quantum defect embedding theory (QDET) is a many-body embedding method designed to describe condensed systems with correlated electrons localized within a given region of space, fo…
First-Principles Framework for the Prediction of Intersystem Crossing Rates in Spin Defects: The Role of Electron Correlation
Yu Jin, Jinsoo Park, Marquis M. McMillan +9
Optically active spin defects in solids are promising platforms for quantum technologies. Here, we present a first-principles framework to investigate intersystem crossing processe…