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Axion-plasmon or magnetized plasma effect on an observable shadow and gravitational lensing of a Schwarzschild black hole

Farruh AtamurotovAkfa University, Kichik Halqa Yuli Street 17, Tashkent 100095, UzbekistanKimet JusufiPhysics Department, State University of Tetovo, Ilinden Street nn, 1200 Tetovo, North MacedoniaMubasher JamilCanadian Quantum Research Center, 204-3002, 32 Ave, Vernon, BC V1T 2L7, CanadaAhmadjon AbdujabbarovShanghai Astronomical Observatory, 80 Nandan Road, Shanghai 200030, ChinaMustapha Azreg‐AïnouEngineering Faculty, Başkent University, Bağlıca Campus, 06790-Ankara, Turkey
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Аннотация

In this paper, we study the influence of the axion-plasmon, as proposed in [Phys. Rev. Lett. 120, 181803 (2018)] on the optical properties of the Schwarzschild black hole. Our aim is to provide a test to detect the effects of a fixed axion background using black holes. To accomplish our goal, we explore the effect of the axion-plasmon coupling on the motion of photons around the Schwarzschild black hole and check the possibility of observing those effects upon the black hole shadow, the gravitational deflection angle, Einstein rings and shadow images obtained by radially infalling gas on a black hole within a plasma medium. We find that these quantities are indeed affected by the axion-plasmon coupling parameters which consequently generalize some of the well-known results in the literature. It is shown that the size of the black hole shadow decreases with increasing axion-plasmon if observed from a sufficiently large distance.

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