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Quantum Wallet: Energy Teleportation Between Five Qubits

Original: "Quantum Energy Teleportation across Multi-Qubit Systems using W-State Entanglement"
arXiv:2505.01863v1 · 2025-05-03 · CC BY 4.0 · ⏱ 1 min · Quantum Physics
Energy teleported for the first time: W-type entanglement enabled its transfer between three, four, and five superconducting qubits.
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Imagine a quantum slush fund: one qubit injects energy, the rest withdraw in descending order. W-type entanglement turns qubits into a distributed resource. Future networks will trade not only qubits but also cooling — wirelessly, bound only by the speed of light. Energy becomes information, and information becomes energy.

🎯 Calling this teleportation is like considering cash withdrawals from an ATM magic. Energy doesn't vanish from the sender nor materialize at the receiver: it's extracted from the shared entanglement account, like heirs withdrawing money from a single account, where the first in line grabs the thickest wad.

|W_n\rangle = \frac{1}{\sqrt{n}} (|10\ldots0\rangle + |010\ldots0\rangle + \ldots + |00\ldots01\rangle)
Equal superposition of all pure states with exactly one excited qubit
E_0 = \frac{h^2}{h^2 + k^2}
Energy introduced by the sender's projective measurement depends on the weights of the initial state
Scientists
Erwin SchrödingerHugh Everett IIIChristian DopplerD. B. McLaughlinDidier QuelozMichel Mayor
Tags
quantum entanglement superposition quantum measurement quantum information quantum computer speed of light Wave Function Collapse quantum decoherence
Laws
Schrödinger equationDoppler effectHeisenberg uncertainty principleHawking radiationprinciple of constancy of the speed of lightmass–energy equivalence
Original: arXiv:2505.01863v1 · CC BY 4.0 · bridge42worlds