Localizability and the planck mass
Y Ne`eman, USDOE, Washington, DC (United States)
Abstract
Open-access reader
Y Ne`eman, USDOE, Washington, DC (United States)
Abstract
Open-access reader
The author combines the assumption of environmental decoherence, as the mechanism generating the classical (i.e. no quantum interferences) nature of spacetime, with the limit on its other classical feature, point-like continuity, namely Planck length. As a result, quantum extended objects with masses larger than Planck mass have to derive their quantum behavior from long-range correlations; objects with masses smaller than Planck mass cannot display classical behavior.
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The author combines the assumption of environmental decoherence, as the mechanism generating the classical (i.e. no quantum interferences) nature of spacetime, with the limit on its other classical feature, point-like continuity, namely Planck length. As a result, quantum extended objects with masses larger than Planck mass have to derive their quantum behavior from long-range correlations; objects with masses smaller than Planck mass cannot display classical behavior.
Key concepts: Planck mass, Planck length, Planck, Planck energy, Physics, Planck time, Quantum decoherence, Virtual black hole