Exploring the impact of quantum chemistry through IUPAC's special issue celebrating the International Year of Quantum Science and Technology
Exploring the complex relationship between molecular chemistry and quantum mechanics, celebrating the International Year of Quantum Science and Technology 2025.
Explore the fascinating world of cavity quantum electrodynamics where scientists engineer microscopic arenas to make light and matter interact in previously impossible ways.
Explore the fascinating world of cavity quantum electrodynamics where scientists precisely control interactions between light and matter at the quantum level.
Explore how quantum catalysts and entanglement are revolutionizing secure communication and building the foundation for a quantum internet.
Explore how scientists are mastering cavity quantum electrodynamics to create hybrid light-matter particles with revolutionary properties.
Explore how super-resolution time-frequency techniques are revealing quantum secrets in 2D materials through unprecedented observation of electron-phonon dynamics.
Explore how quantum trajectory dynamics enable scientists to observe and simulate chemical reactions at the atomic scale, revealing quantum behavior in enzymes and materials.
Explore how quantum forces and many-body dispersion interactions determine crystal polymorphism in pharmaceuticals, affecting drug effectiveness and stability.
Explore how finite rank modifications are revolutionizing quantum systems through precise, surgical adjustments that dramatically alter quantum behavior.