We are continuously sending information to each other, transmitting zeros and ones through a giant network of connected computers and devices. Scientists are now trying to extend this familiar concept of the internet to the quantum realm, looking for an efficient way to exchange quantum rather than classical information: qubits instead of bits. The motivation is not just scientific curiosity. Qubits can be a 0, a 1 or any superposition of the two. They can also become entangled, showing a degree of correlation that is out of reach for classical bits.
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| # | Наименование новости | Тональность | Информативность | Дата публикации |
|---|---|---|---|---|
| 1 | Getting photons into shape for reliable quantum communication | 0 | 5.06 | 14-09-2026 |
| 2 | Scientists teleport quantum states across 100 parallel optical channels | 0 | 9.31 | 21-09-2026 |
| 3 | Nuclear-spin swap extends room-temperature entanglement lifetime up to 240-fold | 0 | 10.51 | 21-09-2026 |
| 4 | memQ Unleashes Open Quantum Compiler Across Networks | 0 | 6.5 | 25-09-2026 |
| 5 | A new bridge for quantum networks: Physicists convert microwaves to light using 2D magnets | 0 | 6.86 | 17-09-2026 |
| 6 | New benchmark puts quantum computers to the test and reveals their limitations | 0 | 6.31 | 17-09-2026 |
| 7 | Ultrathin materials could make quantum light circuits programmable | 0 | 6.6 | 25-09-2026 |
| 8 | Vertical quantum sensor could reveal nanoscale magnetic patterns in quantum materials | 0 | 6.35 | 24-09-2026 |
| 9 | Random access quantum memory lets one processor select among seven storage cells | 0 | 8.81 | 25-09-2026 |
| 10 | Physicists help uncover 'spooky' quantum effect in the Large Hadron Collider | 0 | 6.14 | 14-09-2026 |