Title of article
Relativistic quantum mechanics: a Diracʹs point-form inspired approach Original Research Article
Author/Authors
B. Desplanques، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2005
Pages
29
From page
139
To page
167
Abstract
This paper describes a tentative relativistic quantum mechanics approach inspired by Diracʹs point-form, which is based on the physics description on a hyperboloid surface. It is mainly characterized by a non-standard relation of the constituent momenta of some system to its total momentum. Contrary to instant- and front-form approaches, where it takes the form of a 3-dimensional δ(⋯) function, the relation is given here by a Lorentz-scalar constraint. Thus, in the c.m. frame, the sum of the constituent momenta, which differs from zero off-energy shell, has no fixed direction, in accordance with the absence of preferred direction on a hyperboloid surface. To some extent, this gives rise to an extra degree of freedom entering the description of the system of interest. The development of a consistent formalism within this picture is described. Comparison with other approaches is made.
Keywords
relativity , Two-body system , Form factors
Journal title
Nuclear physics A
Serial Year
2005
Journal title
Nuclear physics A
Record number
1202023
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