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Relativistic Quantum Mechanics of One-Dimensional Mechanical Continuum and Subsidiary Condition of Dual Resonance Model
Author(s) -
Tetsuo Got o
Publication year - 1971
Publication title -
progress of theoretical physics
Language(s) - English
Resource type - Journals
eISSN - 1347-4081
pISSN - 0033-068X
DOI - 10.1143/ptp.46.1560
Subject(s) - physics , relativistic quantum mechanics , dirac equation , classical mechanics , hamiltonian (control theory) , quantum mechanics , relativistic mechanics , supersymmetric quantum mechanics , quantum , hamiltonian mechanics , quantum dynamics , quantum dissipation , mathematical physics , quantum electrodynamics , theory of relativity , mathematical optimization , mathematics , phase space
Relativistic quantum mechanics of a finite one-dimensional continuum is studied in the framework of Dirac's generalized Hamiltonian dynamics. It is shown that the wave equation and subsidiary conditions found by Virasoro in the dual resonance model are equivalent to relativistic quantum mechanics in our system. Interaction with external fields is also studied briefly.

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