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A Trap for 11,000 Atoms: A Step Towards a Quantum Computer ⚡ экспресс

Original: "Trapping 11,000 Atoms in a Tweezer Array Generated by a Single Metasurface"
An invisible laser trap caught 11,000 atoms — a record step toward quantum computers of a new scale.
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An invisible trap made of laser light held 11,000 atoms — a record for quantum engineering. Previously, physicists wrestled with a few dozen of these particles; now the count runs into the thousands. Each atom becomes a qubit — a quantum bit that is both zero and one at once, like a spinning coin balanced on its edge.

The key to success is a flat metasurface the size of a coin. It acts like a lens without bulky glass, mounted outside the vacuum chamber. Light beams focus into perfect pinpoint dots, holding atoms like beads on invisible strings. The loading process is chaotic, some spots remain empty, but this very messiness, called entropy (a measure of disorder), only helps the system work.

Atoms in the traps obey the Standard Model — the master theory of the micro-world. Their number rivals the stellar population of a small galaxy.

Amazingly, inside the chamber the pressure is a billion times lower than atmospheric — almost a cosmic vacuum, without which any collision would shatter the quantum state. Back in the day, Richard Feynman and David Deutsch dreamed of such computers: they could simulate drugs and crack codes, tackling problems beyond the reach of regular machines.

🎯 The metasurface, replacing bulky optics, is no bigger than a coin, yet it can create 11,000 laser traps at once.

🎬 Quantum computers are often depicted in science fiction as machines of incredible power — for example, in Hannu Rajaniemi's novel 'The Quantum Thief'.

Scientists
Emmy NoetherJacob BekensteinStephen HawkingLudwig BoltzmannWolfgang PauliSubrahmanyan Chandrasekhar
Tags
galaxy entropy Standard Model
Laws
second law of thermodynamicsNoether's theoremBekenstein-Hawking entropyBoltzmann distributionfirst law of thermodynamicsspin–statistics theorem
Original: arXiv:2606.02715 · CC BY · bridge42worlds