How Quantum Memories Exchange Energy: A Test of Nonlocal Phenomena
By mapping Bohmian trajectories and analyzing positional shifts in atomic excitation, the researchers confirmed that energy modifications occur nonlocally without violating causality. Their findings align with nonlocal quantum theories, suggesting that energy in one entangled particle is altered by its counterpart’s state. This study provides experimental support for quantum nonlocality in energy dynamics and offers a foundation for further testing of de Broglie-Bohm theory.
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