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From the 1 of 10 linked papers with an AI index.

activity
20242026
collaborators

10 papers

cond-mat.mtrl-sci2026

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…

cond-mat.mtrl-sci2026

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…

cond-mat.mtrl-sci2026

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…

cond-mat.mtrl-sci2026

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…

cond-mat.mtrl-sci2025

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…

cond-mat.mtrl-sci2025

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…