From the 1 of 13 linked papers with an AI index.
13 papers
Symmetry Rules for Cavity Materials Engineering with Linearly Polarized Vacuum Fields
Jingkai Quan, Chongxiao Fan, Benshu Fan +3
Cavity materials engineering, aiming to manipulate material properties by coupling to vacuum fluctuations inside a cavity, is a rapidly advancing field. Despite significant progres…
Cavity Tuning of the CDW--Superconductivity Interplay in a Kagome Metal
Lan-Ting Shi, I-Te Lu, Xin Wang +3
The paper demonstrates that coupling a kagome metal (CsV₃Sb₅) to an out-of-plane polarized optical cavity can selectively soften charge‑density‑wave phonons, enhance electron‑phono…
Macroscopic Polarization and Magnetization from Cavity Vacuum Fluctuations
Jingkai Quan, Chongxiao Fan, Benshu Fan +3
Cavity light-matter interaction has recently emerged as a new avenue for manipulating material properties without driving fields. Here, we demonstrate that cavity vacuum fluctuatio…
Cavity-enhanced superconductivity in the two-dimensional limit of NbSe2
Hanxiang Zhang, Zexin Feng, I-Te Lu +13
Vacuum electromagnetic fluctuations have emerged as a means of controlling collective quantum phases without external driving. Cavity-induced modification of superconductivity has…
Fluctuation engineering in cavity quantum materials
Hope M Bretscher, Lorenzo Graziotto, Marios H Michael +14
Coupling tailored electromagnetic fluctuations to materials provides a resource for controlling correlated quantum matter. By structuring the frequency, spatial, and modal distribu…
Unified ab initio quantum-electrodynamical density-functional theory for cavity-modified electron-phonon-photon coupling in solids
Benshu Fan, I-Te Lu, Michael Ruggenthaler +1
Quantum-electrodynamical density-functional theory (QEDFT) provides a first-principles framework for describing materials coupled to quantized electromagnetic fields. While QEDFT h…