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Gravity Cannot Cure Quantum Mechanics of its Malady of the Collapse of the Wavefunction
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The speculation that gravity is the key to solving the quantum measurement problem has been alive for decades, without any convincing demonstration of a solution. One necessary factor in the relevant proposals is that the gravitational energy of mutual interaction, which scales quadratically with the mass, facilitates the spontaneous collapse of the wavefunctions in spatially separated superpositions. Relying on a simple physical input from electrodynamics, supported by robust first principle calculations, we show that the speculations connecting gravity and the hypothetical spontaneous collapse of the wavefunction are inconsistent and not tenable. The result suggests that the gravitational solution to the problem of the collapse of the wavefunction be put to rest.
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Cited by 1 Pith paper
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Information versus Physicality: On the Nature of the Wavefunctions of Quantum Mechanics
The paper claims PBR's central mapping between wavefunctions and hidden-state distributions contradicts quantum mechanics' linear superposition structure, so PBR's conclusion is invalid.
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