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<span style="font-size: x-small; font-family: CMR10;"><span style="font-size: x-small; font-family: CMR10;">      Herein, the Dirac equation is compared with the Klein-Gordon equation. In contrast to the Dirac case, it is proved that the Klein-Gordon equation has di?culties with the Hamiltonian di?erential operator of relativistic quantum mechanics and with the de?nition of an inner product of wave functions, which is a requirement for a construction of a Hilbert space. An added discussion of the Pauli-Weisskopf article and that of Feshbach-Villars proves that their theories lack a self-consistent expression for the Hamiltonian. Related di?culties are pointed out.
<span style="font-size: x-small; font-family: CMR10;"><span style="font-size: x-small; font-family: CMR10;">      Herein, the Dirac equation is compared with the Klein-Gordon equation. In contrast to the Dirac case, it is proved that the Klein-Gordon equation has di?culties with the Hamiltonian di?erential operator of relativistic quantum mechanics and with the de?nition of an inner product of wave functions, which is a requirement for a construction of a Hilbert space. An added discussion of the Pauli-Weisskopf article and that of Feshbach-Villars proves that their theories lack a self-consistent expression for the Hamiltonian. Related di?culties are pointed out.


</span></span>[[Category:Scientific Paper]]
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[[Category:Relativity]]
[[Category:Scientific Paper|difficulties klein-gordon equation]]
 
[[Category:Relativity|difficulties klein-gordon equation]]

Latest revision as of 21:34, 1 January 2017

Scientific Paper
TitleFurther Difficulties with the Klein-Gordon Equation
Read in fullLink to paper
Author(s)E Comay
KeywordsRelativistic Quantum Mechanics, Dirac Equation, Klein-Gordon Equation, Hamiltonian
Published2005
JournalApeiron
Volume12
Number1
No. of pages21

Read the full paper here

Abstract

Herein, the Dirac equation is compared with the Klein-Gordon equation. In contrast to the Dirac case, it is proved that the Klein-Gordon equation has di?culties with the Hamiltonian di?erential operator of relativistic quantum mechanics and with the de?nition of an inner product of wave functions, which is a requirement for a construction of a Hilbert space. An added discussion of the Pauli-Weisskopf article and that of Feshbach-Villars proves that their theories lack a self-consistent expression for the Hamiltonian. Related di?culties are pointed out.