Journal
CLASSICAL AND QUANTUM GRAVITY
Volume 38, Issue 21, Pages -Publisher
IOP Publishing Ltd
DOI: 10.1088/1361-6382/ac213b
Keywords
numbers; 04; 40; Nr; 04; 20; Jb; 04; 20; Dw; wormhole; shadow; null geodesics
Categories
Funding
- DST-SERB, Govt of India
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Studying the shadows of wormholes provides valuable insights into the evolution of compact objects and is a crucial issue in contemporary astrophysics. The nature of the wormholes greatly influences the shadow effect, which varies based on different parameters in the wormhole spacetime. The average diameter of the wormhole shadow and its deviation from circularity can help constrain the size and spin of the wormhole.
The prospect of identifying wormholes by investigating the shadows of wormholes constitute a foremost source of insight into the evolution of compact objects and it is one of the essential problems in contemporary astrophysics. The nature of the compact objects (wormholes) plays a crucial role on shadow effect, which actually arises during the strong gravitational lensing. Current Event Horizon Telescope observations have inspired scientists to study and to construct the shadow images of the wormholes. In this work, we explore the shadow cast by a certain class of rotating wormhole. To search this, we first compose the null geodesics and study the effects of the parameters on the photon orbit. We have exposed the form and size of the wormhole shadow and have found that it is slanted as well as can be altered depending on the different parameters present in the wormhole spacetime. We also constrain the size and the spin of the wormhole using the results from M87* observation, by investigating the average diameter of the wormhole shadow as well as its deviation from circularity with respect to the wormhole throat size. In a future observation, this type of study may help to indicate the presence of a wormhole in a galactic region.
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