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Fundamental limit of quantum computer to maintain qubits on gravity

Article scientifique 2024 Anglais

Résumé

The ground-based collider detects the effect of gravity in a magnetic sea with or without photons. With photons in the magnetic sea, gravity generates more electricity; without photons, gravity gen-erates less electricity. This gravitoelectric effect explains that gravity physically affects photons or the magnetic field. Moreover, gravity is generated in the opposite spinning direction to photons. If a qubit exists in three-dimensional space, it will navigate under the influence of gravity. The new Qubit–Bernoulli equation describes incompressible flow in a conservative force of gravity. There-fore, stable quantum computers are possible in an orbit where the average force is balanced due to the mutual attraction of gravity. For example, gravity balances these forces on a Lex Tertia qubit that orbits in the Solar system.

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Lee, J. (2024). Fundamental limit of quantum computer to maintain qubits on gravity. https://doi.org/10.31219/osf.io/phxc6

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