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Modelling of Bound States of Dirac Particles in Singular Background in Framework of Symanzik Approach. / Письмак, Юрий Михайлович.
в: Physics of Particles and Nuclei Letters, Том 15, № 4, 01.07.2018, стр. 380-383.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - Modelling of Bound States of Dirac Particles in Singular Background in Framework of Symanzik Approach
AU - Письмак, Юрий Михайлович
PY - 2018/7/1
Y1 - 2018/7/1
N2 - The problem of interaction of the fields of quantum electrodynamic with material macro-object is considered by employing the Symanzik approach on modelling the interaction of quantum field with space-time inhomogeneities. Results obtained in the models with Chern–Simons interaction of photon field with 2-dimensional material are briefly reviewed. In the model of interaction of spinor field with homogeneous isotropic material plane constructed in framework of Symanzik approach, the bound states are considered. For localized near plane Dirac particle the dispersion relation and the expressions for current, charge and density are analyzed. The bound states with massless dispersion law is considered. The presented methods of modelling can find application to a wide class of phenomena emerging from the interaction of quantum fields with extended material structures.
AB - The problem of interaction of the fields of quantum electrodynamic with material macro-object is considered by employing the Symanzik approach on modelling the interaction of quantum field with space-time inhomogeneities. Results obtained in the models with Chern–Simons interaction of photon field with 2-dimensional material are briefly reviewed. In the model of interaction of spinor field with homogeneous isotropic material plane constructed in framework of Symanzik approach, the bound states are considered. For localized near plane Dirac particle the dispersion relation and the expressions for current, charge and density are analyzed. The bound states with massless dispersion law is considered. The presented methods of modelling can find application to a wide class of phenomena emerging from the interaction of quantum fields with extended material structures.
KW - Chern–Simons interaction
KW - Dirac equation with singular potential
KW - Inhomogeneous space-time in quantum electrodynamic
KW - parity and time reversal symmetry breaking
UR - http://www.scopus.com/inward/record.url?scp=85049556703&partnerID=8YFLogxK
U2 - 10.1134/S1547477118040180
DO - 10.1134/S1547477118040180
M3 - Article
VL - 15
SP - 380
EP - 383
JO - Physics of Particles and Nuclei Letters
JF - Physics of Particles and Nuclei Letters
SN - 1547-4771
IS - 4
ER -
ID: 36949602