Gyroscopic effects in fullerite crystal upon deformation

In this paper, the effect of deformation of a fullerite crystal on the dynamic properties of a rotating C 60 molecule located in the center of a selected fragment is analyzed. The spherical potential of pair interaction is used to determine the dynamic characteristics of surrounding molecules. The a...

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Published inEuropean physical journal plus Vol. 136; no. 4; p. 388
Main Authors Bubenchikov, Alexey M., Bubenchikov, Mikhail A., Lun-Fu, Aleksandr V., Ovchinnikov, Vyacheslav A.
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.04.2021
Springer Nature B.V
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Abstract In this paper, the effect of deformation of a fullerite crystal on the dynamic properties of a rotating C 60 molecule located in the center of a selected fragment is analyzed. The spherical potential of pair interaction is used to determine the dynamic characteristics of surrounding molecules. The angular oscillations and rotation of the central C 60 molecule are described using the dynamic Euler equations. The effect of the direction of deformation of a fragment of a fullerite crystal on the precessional displacement of a rotating fullerene molecule is investigated depending on the direction and magnitude of the initial angular velocity.
AbstractList In this paper, the effect of deformation of a fullerite crystal on the dynamic properties of a rotating C60 molecule located in the center of a selected fragment is analyzed. The spherical potential of pair interaction is used to determine the dynamic characteristics of surrounding molecules. The angular oscillations and rotation of the central C60 molecule are described using the dynamic Euler equations. The effect of the direction of deformation of a fragment of a fullerite crystal on the precessional displacement of a rotating fullerene molecule is investigated depending on the direction and magnitude of the initial angular velocity.
In this paper, the effect of deformation of a fullerite crystal on the dynamic properties of a rotating C 60 molecule located in the center of a selected fragment is analyzed. The spherical potential of pair interaction is used to determine the dynamic characteristics of surrounding molecules. The angular oscillations and rotation of the central C 60 molecule are described using the dynamic Euler equations. The effect of the direction of deformation of a fragment of a fullerite crystal on the precessional displacement of a rotating fullerene molecule is investigated depending on the direction and magnitude of the initial angular velocity.
ArticleNumber 388
Author Ovchinnikov, Vyacheslav A.
Lun-Fu, Aleksandr V.
Bubenchikov, Mikhail A.
Bubenchikov, Alexey M.
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Copyright The Author(s), under exclusive licence to Società Italiana di Fisica and Springer-Verlag GmbH Germany, part of Springer Nature 2021
The Author(s), under exclusive licence to Società Italiana di Fisica and Springer-Verlag GmbH Germany, part of Springer Nature 2021.
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Snippet In this paper, the effect of deformation of a fullerite crystal on the dynamic properties of a rotating C 60 molecule located in the center of a selected...
In this paper, the effect of deformation of a fullerite crystal on the dynamic properties of a rotating C60 molecule located in the center of a selected...
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SubjectTerms Angular velocity
Applied and Technical Physics
Atomic
Buckminsterfullerene
Carbon
Complex Systems
Composite materials
Condensed Matter Physics
Crystals
Deformation
Deformation effects
Dynamic characteristics
Euler-Lagrange equation
Fullerenes
Influence
Mathematical and Computational Physics
Molecular
Optical and Plasma Physics
Ordinary differential equations
Physics
Physics and Astronomy
Radiation
Regular Article
Rotation
Theoretical
Velocity
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Title Gyroscopic effects in fullerite crystal upon deformation
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