Simple

A Message That Cannot Be Copied ⚡ экспресс

Original: "The uncloneable bit exists"
arXiv:2603.08916 · 2026-03-09 · CC BY · ⏱ 1 min · Quantum Physics
A new quantum cipher prevents two eavesdroppers from reading the message simultaneously, even if both have the key.
Abstract

Scientists have shown that quantum encryption can create messages that can't be copied, even if eavesdroppers have the key. It's like a secret that vanishes the moment two people try to overhear it at once. This 'unclonable' bit is pure quantum magic—it simply doesn't exist in the everyday world. What other copying tricks does nature forbid at the deepest level?

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In the quantum world, you cannot create a copy of an unknown particle's state – this was established by William Wootters and Wojciech Zurek in 1982, and Charles Bennett turned this prohibition into a data protection tool. Now researchers have built a scheme where the encrypted message self-destructs upon any attempt at dual reading. The mechanism resembles a black hole: as soon as one interceptor "illuminates" the message to read it, the information irretrievably slips beyond the event horizon for everyone else.

The protection is absolute – it rests not on the complexity of cracking, but on fundamental limitations of nature. Two adversaries cannot conspire faster than the speed of light, so their actions remain uncoordinated. And thanks to maximum entropy, the ciphertext looks like perfect white noise. As a result, guessing the secret bit is no better than flipping a coin.

This discovery introduces the "unclonable bit" – a new building block for absolutely secure communications. Interestingly, a similar principle is already applied in quantum communication lines: any eavesdropping does not go unnoticed.

🎯 The no-cloning theorem for quantum states is already used in banking communication lines: any attempt to eavesdrop on the transmission is immediately detected.

Scientists
Christian DopplerD. B. McLaughlinDidier QuelozMichel MayorR. A. RossiterStephen Hawking
Tags
entropy black hole speed of light
Laws
second law of thermodynamicsDoppler effectHawking radiationgravitational lensingprinciple of constancy of the speed of lightBekenstein-Hawking entropy
Original: arXiv:2603.08916 · CC BY · bridge42worlds