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Transport Properties of the Universal Quantum Equation

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摘要 The universal quantum equation(UQE)is found to describe the transport properties of the quantum particles.This equation describes a wave equation interacting with constant scalar and vector potentials propagating in spacetime.A new transformation that sends the Schr(o)dinger equation with a potential energy V=-1/2mc^(2)to Dirac's equation is proposed.The Cattaneo telegraph equation as well as a one-dimensional UQE are compatible with our recently proposed generalized continuity equations.Furthermore,a new wave equation resulted from the invariance of the UQE under the post-Galilean transformations is derived.This equation is found to govern a Klein Gordon's particle interacting with a photon-like vector field(ether)whose magnitude is proportional to the particle's mass.
作者 A.I.Arbab
机构地区 Department of Physics
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2012年第3期21-24,共4页 中国物理快报(英文版)
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