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The Quantum World Denies Objective Reality ⚡ экспресс

Original: "Identical, independent quantum weak measurements violate objective realism"
arXiv:2603.22020 · 2026-03-23 · CC BY · ⏱ 1 min · Quantum Physics
Weak measurements on publicly accessible quantum computers have proven that quantum particles have no definite properties until observed.
Abstract

Using weak measurements on IBM and IonQ quantum computers, it was shown that quantum objects do not have predetermined properties before observation. This contradicts our intuitive notion of an objective reality. The confidence level is 10 standard deviations, virtually ruling out chance. Does this mean that reality is shaped by measurement?

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Reality is like an undeveloped photograph: before measurement, it remains just a cloud of possibilities. Only when we 'develop' it through observation does the particle acquire definite properties. This view was confirmed by experiments on IBM and IonQ quantum computers using weak measurements—a delicate method akin to developing film in dim light so as not to overexpose the 'photograph' entirely. Back in the 1960s, John Bell proposed searching for hidden parameters, and later Yakir Aharonov developed the technique of weak measurements. Today, it allows peering into the quantum world with minimal disturbance: entropy barely increases, unlike with crude methods. This approach is reminiscent of spectroscopy—studying matter through light without direct contact. The result: confidence in the absence of hidden properties exceeded the usual threshold by 10 times. This is not just philosophy—such experiments help test the logic gates of quantum computers. And the most unexpected twist: weak measurements can capture the effects of ultra-rare events, like photographic film sensitive to single photons.

🎯 Weak measurements are so delicate that they can pick up an effect even if it occurs with a probability of one in a billion—like photographic film capturing single photons.

🎬 In 'The Matrix', reality was an illusion dependent on perception. Quantum experiments show that at the microlevel, the world is indeed 'undefined' until it is observed.

Scientists
Christian DopplerD. B. McLaughlinDidier QuelozMichel MayorR. A. RossiterEmmy Noether
Tags
Standard Model entropy spectroscopy
Laws
second law of thermodynamicsDoppler effectNoether's theoremBekenstein-Hawking entropyMaxwell's equationsPlanck's law
Original: arXiv:2603.22020 · CC BY · bridge42worlds