The gravitational effects in the relativistic quantum mechanics are investigated. The exact Foldy-Wouthuysen transformation is constructed for the Dirac particle coupled to the static spacetime metric. As a direct application, we analyze the non-relativistic limit of the theory. The new term describing the specific spin (gravitational moment) interaction effect is recovered in the Hamiltonian. The comparison of the true gravitational coupling with the purely inertial case demonstrates that the spin relativistic effects do not violate the equivalence principle for the Dirac fermions
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...
The basic physical structure of the relativistic theory of gravitation is discussed. The significant...
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...
We investigate the nonrelativistic limit of the gravitationally coupled Dirac equation via a Foldy-W...
We study the quantum and classical dynamics of spinning particles in the framework of the general-re...
http://arxiv.org/abs/gr-qc/9803017The inertial and gravitational properties of intrinsic spin are di...
http://arxiv.org/abs/0801.2134Mathisson's spin-gravity coupling and its Larmor-equivalent interactio...
A relativistic quantum theory of gravity is proposed in which the gravitational interaction between ...
doi: 10.1088/0264-9381/21/16/005The massless field perturbations of the accelerating Minkowski and S...
We present a second-quantized field theory of massive spin one-half particles or antiparticles in th...
http://arxiv.org/abs/gr-qc/0011013The basic physical structure of the relativistic theory of gravita...
We discuss the nonrelativistic limit of quantum field theory in an inertial frame, in the Rindler fr...
An analysis of the classical-quantum correspondence shows that it needs to identify a preferred clas...
The motion of spinning relativistic particles in external electromagnetic and gravitational fields i...
We analyze the behavior of a spinning particle in gravity, both from a quantum and a classical point...
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...
The basic physical structure of the relativistic theory of gravitation is discussed. The significant...
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...
We investigate the nonrelativistic limit of the gravitationally coupled Dirac equation via a Foldy-W...
We study the quantum and classical dynamics of spinning particles in the framework of the general-re...
http://arxiv.org/abs/gr-qc/9803017The inertial and gravitational properties of intrinsic spin are di...
http://arxiv.org/abs/0801.2134Mathisson's spin-gravity coupling and its Larmor-equivalent interactio...
A relativistic quantum theory of gravity is proposed in which the gravitational interaction between ...
doi: 10.1088/0264-9381/21/16/005The massless field perturbations of the accelerating Minkowski and S...
We present a second-quantized field theory of massive spin one-half particles or antiparticles in th...
http://arxiv.org/abs/gr-qc/0011013The basic physical structure of the relativistic theory of gravita...
We discuss the nonrelativistic limit of quantum field theory in an inertial frame, in the Rindler fr...
An analysis of the classical-quantum correspondence shows that it needs to identify a preferred clas...
The motion of spinning relativistic particles in external electromagnetic and gravitational fields i...
We analyze the behavior of a spinning particle in gravity, both from a quantum and a classical point...
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...
The basic physical structure of the relativistic theory of gravitation is discussed. The significant...
We present the general quantum-mechanical description of Dirac particles with electric and magnetic ...