![]() Create native, cross-platform desktop apps with easeĪs far as the structure is concerned, Electron generally consists of three components: package.json (metadata, contains the app name and version), main.js (the main process, which creates windows and handles system-related events), and index.html (GUI, the webpage to display. ![]() Besides Windows, compatibility extends to MacOS and Linux. Actually, the developers behind Electron are behind Atom too. Some well-known projects created with Electron are Atom, Nylas N1, GitKraken, GitHub Desktop, and Visual Studio Code, the latter being Microsoft's very own source code editor. It takes advantage of the frontend and backend modules that were originally made for web apps, namely the Node.js runtime and Chromium web browser. Our results deeply question methods based on state-of-the-art approaches and impact a wide range of fields such as thermal conductivity, phononic instabilities and non-equilibrium lattice dynamics.Previously known as Atom Shell, Electron is a free and open-source GUI framework that gives developers the possibility to build cross-platforms applications using HTML, CSS and JavaScript code. We find that the present treatment enhances the linewidths by $57 \%$ with respect to what has been previously reported for the anomalous $E_$ mode is also anomalous (its strong coupling being completely quenched by the overscreened expression). ![]() We derive a correct formulation of the electron-phonon interaction and demonstrate its validity by numerically implementing the new scheme in a paradigmatic material: MgB$_2$, a system whose double-gap, low-$T_c$ superconductivity depends on exceptionally high phonon linewidths. This is due to the incorrect treatment of the screening of the ionic potential. ![]() Download a PDF of the paper titled Overscreening-free electron-phonon interaction in realistic materials, by Fulvio Paleari and Andrea Marini Download PDF Abstract:State-of-the-art model Hamiltonians, like Fröhlich's, or density functional theory approaches to electron-phonon interaction suffer from a severe overscreening error. ![]()
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