Shadow of Kerr-Taub-NUT black hole

The shadow of a rotating black hole with nonvanishing gravitomagnetic charge has been studied. It was shown that in addition to the angular momentum of black hole the gravitomagnetic charge term deforms the shape of the black hole shadow. From the numerical results we have obtained that for a given...

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Published inAstrophysics and space science Vol. 344; no. 2; pp. 429 - 435
Main Authors Abdujabbarov, Ahmadjon, Atamurotov, Farruh, Kucukakca, Yusuf, Ahmedov, Bobomurat, Camci, Ugur
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.04.2013
Springer Nature B.V
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Abstract The shadow of a rotating black hole with nonvanishing gravitomagnetic charge has been studied. It was shown that in addition to the angular momentum of black hole the gravitomagnetic charge term deforms the shape of the black hole shadow. From the numerical results we have obtained that for a given value of the rotation parameter, the presence of a gravitomagnetic charge enlarges the shadow and reduces its deformation with respect to the spacetime without gravitomagnetic charge. Finally we have studied the capture cross section for massive particles by black hole with the nonvanishing gravitomagnetic charge.
AbstractList The shadow of a rotating black hole with nonvanishing gravitomagnetic charge has been studied. It was shown that in addition to the angular momentum of black hole the gravitomagnetic charge term deforms the shape of the black hole shadow. From the numerical results we have obtained that for a given value of the rotation parameter, the presence of a gravitomagnetic charge enlarges the shadow and reduces its deformation with respect to the spacetime without gravitomagnetic charge. Finally we have studied the capture cross section for massive particles by black hole with the nonvanishing gravitomagnetic charge.
The shadow of a rotating black hole with nonvanishing gravitomagnetic charge has been studied. It was shown that in addition to the angular momentum of black hole the gravitomagnetic charge term deforms the shape of the black hole shadow. From the numerical results we have obtained that for a given value of the rotation parameter, the presence of a gravitomagnetic charge enlarges the shadow and reduces its deformation with respect to the spacetime without gravitomagnetic charge. Finally we have studied the capture cross section for massive particles by black hole with the nonvanishing gravitomagnetic charge.[PUBLICATION ABSTRACT]
Author Atamurotov, Farruh
Kucukakca, Yusuf
Abdujabbarov, Ahmadjon
Camci, Ugur
Ahmedov, Bobomurat
Author_xml – sequence: 1
  givenname: Ahmadjon
  surname: Abdujabbarov
  fullname: Abdujabbarov, Ahmadjon
  email: ahmadjon@astrin.uz
  organization: Institute of Nuclear Physics, Ulugh Begh Astronomical Institute
– sequence: 2
  givenname: Farruh
  surname: Atamurotov
  fullname: Atamurotov, Farruh
  organization: Institute of Nuclear Physics, National University of Uzbekistan
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  givenname: Yusuf
  surname: Kucukakca
  fullname: Kucukakca, Yusuf
  organization: Department of Physics, Akdeniz University
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  givenname: Bobomurat
  surname: Ahmedov
  fullname: Ahmedov, Bobomurat
  organization: Institute of Nuclear Physics, Ulugh Begh Astronomical Institute
– sequence: 5
  givenname: Ugur
  surname: Camci
  fullname: Camci, Ugur
  organization: Department of Physics, Akdeniz University
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Snippet The shadow of a rotating black hole with nonvanishing gravitomagnetic charge has been studied. It was shown that in addition to the angular momentum of black...
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SubjectTerms Astrobiology
Astronomy
Astrophysics
Astrophysics and Astroparticles
Atoms & subatomic particles
Black holes
Cosmology
Gravity
Magnetic fields
Observations and Techniques
Original Article
Physics
Physics and Astronomy
Space Exploration and Astronautics
Space Sciences (including Extraterrestrial Physics
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Title Shadow of Kerr-Taub-NUT black hole
URI https://link.springer.com/article/10.1007/s10509-012-1337-6
https://www.proquest.com/docview/1314057701
https://www.proquest.com/docview/1318694554
Volume 344
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