会议论文详细信息
10th Biennial Conference on Classical and Quantum Relativistic Dynamics of Particles and Fields
Speeds of light in Stueckelberg-Horwitz-Piron electrodynamics
Land, Martin^1
Department of Computer Science, Hadassah College, 37 HaNeviim Street, Jerusalem, Israel^1
关键词: Dimensionless ratios;    Equilibrium state;    Evolution parameters;    Maxwell theory;    Nonrelativistic limits;    Space-time evolution;    Special relativity;    Temporal order;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/845/1/012024/pdf
DOI  :  10.1088/1742-6596/845/1/012024
来源: IOP
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【 摘 要 】
Stueckelberg-Horwitz-Piron (SHP) electrodynamics formalizes the distinction between coordinate time (measured by laboratory clocks) and chronology (temporal ordering) by defining 4D spacetime events xμas functions of an external evolution parameter τ. As τ grows monotonically, the spacetime evolution of classical events xμ(τ) trace out particle worldlines dynamically and induce the five U(1) gauge potentials through which events interact. In analogy with the constant c that associates a unit of length x0with intervals of time t in standard relativity, we introduce a constant c5associated with the external time τ. Whereas the nonrelativistic limit of special relativity can be found by taking c → ∞, we show that 5D SHP goes over to an equilibrium state of Maxwell theory in the limit c5→ 0. Thus, the dimensionless ratio c5/c parameterizes the deviation of SHP from standard electrodynamics, in particular the coupling of events. Put another way, Maxwell theory can be understood as currents and fields relaxing to an equilibrium independent of chronological time as c5τ slows to zero. We find that taking 0 5/c
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