J 2013

SYMMETRY PROPERTIES OF THE EXACT EM RADIATION-REACTION EQUATION FOR CLASSICAL EXTENDED PARTICLES AND ANTIPARTICLES

CREMASCHINI, Claudio a Massimo TESSAROTTO

Základní údaje

Originální název

SYMMETRY PROPERTIES OF THE EXACT EM RADIATION-REACTION EQUATION FOR CLASSICAL EXTENDED PARTICLES AND ANTIPARTICLES

Název anglicky

SYMMETRY PROPERTIES OF THE EXACT EM RADIATION-REACTION EQUATION FOR CLASSICAL EXTENDED PARTICLES AND ANTIPARTICLES

Autoři

CREMASCHINI, Claudio a Massimo TESSAROTTO

Vydání

International Journal of Modern Physics A, SG - Singapurská republika, 2013, 0217-751X

Další údaje

Typ výsledku

Článek v odborném periodiku

Obor

10304 Nuclear physics

Utajení

není předmětem státního či obchodního tajemství

Odkazy

Organizační jednotka

Fyzikální ústav v Opavě

UT WoS

000322366200007

Klíčová slova anglicky

Classical electrodynamics; Special relativity; Radiation-reaction; Variational principles; Symmetry properties

Štítky

Příznaky

Mezinárodní význam, Recenzováno
Změněno: 29. 3. 2021 09:47, Mgr. Pavlína Jalůvková

Anotace

V originále

Based on recent theoretical developments (Cremaschini and Tessarotto, 2011-2013), in this paper the issue is addressed of the first-principle construction of the nonlocal relativistic radiation-reaction (RR) equation for classical spherical-shell, finite-size particles and antiparticles. This is achieved invoking the axioms of Classical Electrodynamics by means of the Hamilton variational principle. In connection with this, the Lagrangian conservation laws, together with the possible existence of adiabatic invariants, and the transformation laws of the RR equation with respect to CPT and time-reversal transformations are investigated. The latter properties make possible the parametrization of the RR equations, holding respectively for particles and antiparticles of this type, in terms of the same coordinate time t and the investigation of the qualitative properties of their solutions. In particular, in both cases the RR self-force is found to have the same signature, which implies that