Recent Progress on the Description of Relativistic Spin: Vector Model of Spinning Particle and Rotating Body with Gravimagnetic Moment in General Relativity

被引:60
作者
Deriglazov, Alexei A. [1 ,2 ]
Ramirez, Walberto Guzman [1 ]
机构
[1] Univ Fed Juiz de Fora, ICE, Dept Matemat, Juiz De Fora, MG, Brazil
[2] Tomsk Polytech Univ, Lab Math Phys, Lenin Ave 30, Tomsk 634050, Russia
关键词
QUANTIZATION; ELECTRON; ELECTRODYNAMICS; DYNAMICS; BODIES; MOTION; SPACE; MASS;
D O I
10.1155/2017/7397159
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We review the recent results on development of vector models of spin and apply them to study the influence of spin-field interaction on the trajectory and precession of a spinning particle in external gravitational and electromagnetic fields. The formalism is developed starting from the Lagrangian variational problem, which implies both equations of motion and constraints which should be presented in a model of spinning particle. We present a detailed analysis of the resulting theory and show that it has reasonable properties on both classical and quantum level. We describe a number of applications and show how the vector model clarifies some issues presented in theoretical description of a relativistic spin: (A) one-particle relativistic quantum mechanics with positive energies and its relation with the Dirac equation and with relativistic Zitterbewegung; (B) spin-induced noncommutativity and the problem of covariant formalism; (C) three-dimensional acceleration consistent with coordinate-independence of the speed of light in general relativity and rainbow geometry seen by spinning particle; (D) paradoxical behavior of the Mathisson-Papapetrou-Tulczyjew-Dixon equations of a rotating body in ultrarelativistic limit, and equations with improved behavior.
引用
收藏
页数:49
相关论文
共 123 条
[31]   A semiclassical description of relativistic spin without the use of Grassmann variables and the Dirac equation [J].
Deriglazov, A. A. .
ANNALS OF PHYSICS, 2012, 327 (02) :398-406
[32]   Analysis of constrained theories without use of primary constraints [J].
Deriglazov, AA .
PHYSICS LETTERS B, 2005, 626 :243-248
[33]   Rigid particle revisited: Extrinsic curvature yields the Dirac equation [J].
Deriglazov, Alexei ;
Nersessian, Armen .
PHYSICS LETTERS A, 2014, 378 (18-19) :1224-1227
[34]   Mathisson-Papapetrou-Tulczyjew-Dixon equations in ultra-relativistic regime and gravimagnetic moment [J].
Deriglazov, Alexei A. ;
Ramirez, Walberto Guzman .
INTERNATIONAL JOURNAL OF MODERN PHYSICS D, 2017, 26 (06)
[35]   Relativistic corrections to the algebra of position variables and spin-orbital interaction [J].
Deriglazov, Alexei A. ;
Pupasov-Maksimov, Andrey M. .
PHYSICS LETTERS B, 2016, 761 :207-212
[36]   Ultrarelativistic Spinning Particle and a Rotating Body in External Fields [J].
Deriglazov, Alexei A. ;
Ramirez, Walberto Guzman .
ADVANCES IN HIGH ENERGY PHYSICS, 2016, 2016
[37]   Hamiltonian action of spinning particle with gravimagnetic moment [J].
Deriglazov, Alexei A. ;
Ramirez, W. Guzman .
XXIII INTERNATIONAL CONFERENCE ON INTEGRABLE SYSTEMS AND QUANTUM SYMMETRIES (ISQS-23), 2016, 670
[38]   World-line geometry probed by fast spinning particle [J].
Deriglazov, Alexei A. ;
Ramirez, Walberto Guzman .
MODERN PHYSICS LETTERS A, 2015, 30 (21)
[39]   Lagrangian for Frenkel electron and position's non-commutativity due to spin [J].
Deriglazov, Alexei A. ;
Pupasov-Maksimov, Andrey M. .
EUROPEAN PHYSICAL JOURNAL C, 2014, 74 (10) :1-18
[40]   Lagrangian for the Frenkel electron [J].
Deriglazov, Alexei A. .
PHYSICS LETTERS B, 2014, 736 :278-282