8 citations · 8 across the 4 of their papers we have counts for
6 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…
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…
Ultrafast dynamics of local charge order in a THz-induced metastable quantum state
Luis E. Parra López, Jingkai Quan, Alkisti Vaitsi +5
Controlling quantum materials with ultrafast light pulses enables access to transient and metastable states that are inaccessible under equilibrium conditions. Yet their local dyna…
Roadmap on Advancements of the FHI-aims Software Package
Joseph W. Abbott, Carlos Mera Acosta, Alaa Akkoush +203
Electronic-structure theory is the foundation of the description of materials including multiscale modeling of their properties and functions. Obviously, without sufficient accurac…
Efficient Band Structure Unfolding with Atom-centered Orbitals: General Theory and Application
Jingkai Quan, Nikita Rybin, Matthias Scheffler +1
Band structure unfolding is a key technique for analyzing and simplifying the electronic band structure of large, internally distorted supercells that break the primitive cell's tr…
Temperature-dependent Electronic Spectral Functions from Band-Structure Unfolding
Jingkai Quan, Min-Ye Zhang, Nikita Rybin +5
The electronic band structure, describing the periodic dependence of electronic quantum states on lattice momentum in reciprocal space, is a fundamental concept in solid-state phys…