Complex simulations—the most intricate of their kind to date—carried out by an international research team led by scientists at Heidelberg University's Institute for Physical Chemistry, have revealed how water governs the way protons move through it. Using their modeling, researchers from Cambridge (U.K.), Bochum, Dijon (France) and Heidelberg were able to trace, in full quantum detail, the movements of a proton shared among six water molecules. At its core, the work addresses how a proton moves through water: not as a single particle drifting along, but by "hopping" from one molecule to the next.
🛡️
Just a quick checkWe’re checking your connection to prevent automated abuse
| # | Наименование новости | Тональность | Информативность | Дата публикации |
|---|---|---|---|---|
| 1 | 🌊 КВАНТОВАЯ ВОДА. УЧЁНЫЕ В ТУПИКЕ, А МЫ — НА ... | 5 | 8 | 29-06-2026 |
| 2 | Schrödinger‑like charges in six‑molecule clusters point to new quantum components | 0 | 6.94 | 16-07-2026 |
| 3 | Quantum computer simulates hadronization, reproducing string breaking with 104 qubits | 5 | 7 | 30-06-2026 |
| 4 | Quantum Tunneling Drives Hydrogen Transport in Lanthanum Trihydride Near Practical Temperatures | 0 | 10.41 | 01-07-2026 |
| 5 | Synchronized infrared lasers control molecular shape changes and expose hidden fingerprints | 5 | 8 | 02-07-2026 |
| 6 | Shaking atoms to bring black-hole quantum chaos into the lab | 0 | 8.93 | 23-07-2026 |
| 7 | Quantum simulations that bypass resolution limits offer insights into high-temperature superconductivity | 0 | 9.46 | 22-04-2026 |
| 8 | New atomic trap boosts quantum performance by utilising surface forces | 6 | 7 | 14-07-2026 |
| 9 | Spontaneous current loops in a kagome metal point to hidden quantum order | 0 | 7 | 02-07-2026 |