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Article

Collision of a Positron with the Capture of an Electron from Lithium and the Effect of a Magnetic Field on the Particles Balance

by
Elena V. Orlenko
1,*,
Alexandr V. Evstafev
1 and
Fedor E. Orlenko
2
1
Theoretical Physics Department, Institute of Physics, Nanotechnology and Telecommunication, Peter the Great Saint Petersburg Polytechnic University, 195251 St. Petersburg, Russia
2
Scientific and Educational Center for Biophysical Research in the Field of Pharmaceuticals, Saint Petersburg State Chemical Pharmaceutical University (SPCPA), 197376 St. Petersburg, Russia
*
Author to whom correspondence should be addressed.
Chemosensors 2021, 9(3), 45; https://doi.org/10.3390/chemosensors9030045
Submission received: 24 December 2020 / Revised: 14 February 2021 / Accepted: 23 February 2021 / Published: 27 February 2021
(This article belongs to the Section Electrochemical Devices and Sensors)

Abstract

The processes of scattering slow positrons with the possible formation of positronium play an important role in the diagnosis of both composite materials, including semiconductor materials, and for the analysis of images obtained by positron tomography of living tissues. In this paper, we consider the processes of scattering positrons with the capture of an electron and the formation of positronium. When calculating the cross-section for the capture reaction, exchange effects caused by the rearrangement of electrons between colliding particles are taken into account. Comparison of the results of calculating the cross-section with a similar problem of electron capture by a proton showed that the mass effect is important in such a collision process. The loss of an electron by a lithium atom is more effective when it collides with a positron than with a proton or alpha particles. The dynamic equilibrium of the formation of positronium in the presence of a strong magnetic field is considered. It is shown that a strong magnetic field during tomography investigation shifts the dynamic equilibrium to the positronium concentration followed by positron annihilation with radiation of three gamma-quants.
Keywords: positron scattering; electron capture; exchange effects; cross-section with electron exchange; electron; positron-positronium equilibrium; equilibrium shift in magnetic field positron scattering; electron capture; exchange effects; cross-section with electron exchange; electron; positron-positronium equilibrium; equilibrium shift in magnetic field

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MDPI and ACS Style

Orlenko, E.V.; Evstafev, A.V.; Orlenko, F.E. Collision of a Positron with the Capture of an Electron from Lithium and the Effect of a Magnetic Field on the Particles Balance. Chemosensors 2021, 9, 45. https://doi.org/10.3390/chemosensors9030045

AMA Style

Orlenko EV, Evstafev AV, Orlenko FE. Collision of a Positron with the Capture of an Electron from Lithium and the Effect of a Magnetic Field on the Particles Balance. Chemosensors. 2021; 9(3):45. https://doi.org/10.3390/chemosensors9030045

Chicago/Turabian Style

Orlenko, Elena V., Alexandr V. Evstafev, and Fedor E. Orlenko. 2021. "Collision of a Positron with the Capture of an Electron from Lithium and the Effect of a Magnetic Field on the Particles Balance" Chemosensors 9, no. 3: 45. https://doi.org/10.3390/chemosensors9030045

APA Style

Orlenko, E. V., Evstafev, A. V., & Orlenko, F. E. (2021). Collision of a Positron with the Capture of an Electron from Lithium and the Effect of a Magnetic Field on the Particles Balance. Chemosensors, 9(3), 45. https://doi.org/10.3390/chemosensors9030045

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