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Semiclassical Quantization Condition for a Relativistic Bound System of Two Equal-Mass Fermions
New relativistic semiclassical quantization conditions are obtained for a system of two equal-mass fermions interacting via nonsingular confining quasipotentials and quasipotentials of the funnel type. The quantization conditions are specified in the pseudoscalar, pseudovector, and vector cases. The...
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Published in: | Physics of atomic nuclei 2020-05, Vol.83 (3), p.488-494 |
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container_end_page | 494 |
container_issue | 3 |
container_start_page | 488 |
container_title | Physics of atomic nuclei |
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creator | Chernichenko, Yu. D. |
description | New relativistic semiclassical quantization conditions are obtained for a system of two equal-mass fermions interacting via nonsingular confining quasipotentials and quasipotentials of the funnel type. The quantization conditions are specified in the pseudoscalar, pseudovector, and vector cases. The respective analysis is performed within the Hamiltonian formulation of quantum field theory via a transition to the relativistic configuration representation for the case of a bound system formed by two relativistic spin particles of equal mass. |
doi_str_mv | 10.1134/S1063778820030047 |
format | article |
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subjects | ELEMENTARY PARTICLES AND FIELDS/Theory Fermions Field theory Measurement Particle and Nuclear Physics Particle spin Physics Physics and Astronomy Quantum field theory Quantum theory Relativistic effects Relativistic particles |
title | Semiclassical Quantization Condition for a Relativistic Bound System of Two Equal-Mass Fermions |
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