collaborators

6 papers

cond-mat.mtrl-sci2026

Electron correlation in semiconductors and insulators via symbolic regression

Nick Pant, Viet-Anh Ha, Donghwan Kim +1

Predicting quasiparticle energies in materials requires expensive numerical evaluations of the electron self-energy. This limits calculations to ordered systems with small unit cel…

cond-mat.mtrl-sci2026

First-principles predictions of carrier mobility with record accuracy using GW perturbation theory

Nick Pant, Sabyasachi Tiwari, Steven G. Louie +2

Accurate prediction of carrier mobility is critical for the discovery and design of next-generation electronic materials. Despite sustained progress, state-of-the-art ab initio met…

cond-mat.mtrl-sci2025

Efficient First-Principles Framework for Overdamped Phonon Dynamics and Anharmonic Electron-Phonon Coupling in Superionic Materials

Yuxuan Wang, Marios Zacharias, Xiao Zhang +4

Relying on the anharmonic special displacement method, we introduce an ab initio quasistatic polymorphous framework to describe local disorder, anharmonicity, and electron-phonon c…

cond-mat.mtrl-sci2025

Electron mobility in AlN from first principles

Amanda Wang, Nick Pant, Woncheol Lee +3

Aluminum nitride is a promising ultra-wide band gap semiconductor for optoelectronics and power electronics. However, its practical applications have been limited by challenges wit…

physics.optics2025

Enhancing light emission with electric fields in polar nitride semiconductors

Nick Pant, Rob Armitage, Emmanouil Kioupakis

Significant effort has been devoted to mitigating polarization fields in nitride LEDs, as these fields are traditionally viewed as detrimental to light emission, particularly for r…

physics.app-ph2025

Impact of Quantum Well Thickness on Efficiency Loss in InGaN/GaN LEDs: Challenges for Thin-Well Designs

Xuefeng Li, Nick Pant, Sheikh Ifatur Rahman +4

We investigate the impact of quantum well (QW) thickness on efficiency loss in c-plane InGaN/GaN LEDs using a small-signal electroluminescence (SSEL) technique. Multiple mechanisms…