-
[1]
Chandrasekhar Subrahmanyan, Mathematical Theory of Black Holes. Oxford University Press, 1999
-
[2]
G. W. Gibbons, C. M. Warnick, and M. C. Werner, Classical and Quantum Gravity 25(24), 245009 (2008)
-
[3]
J. N. Islam, Phys. Lett. A 97(6), 239-241 (1983)
-
[4]
M. J. Jaklitsch, Charles Hellaby, and D. R. Matravers, General Relativity and Gravitation 21(9), 941-951 (1989)
-
[5]
Zdenek Stuchlik and Massimo Calvani, General Relativity and Gravitation 23(5), 507-519 (1991)
-
[6]
G. V. Kraniotis and S. B. Whitehouse, Classical and Quantum Gravity 20(22), 4817 (2003)
-
[7]
G. V. Kraniotis, Classical and Quantum Gravity 21(19), 4743 (2004)
-
[8]
Norman Cruz, Marco Olivares, and Jose R. Villanueva, Classical and Quantum Gravity 22(6), 1167 (2005)
-
[9]
Eva Hackmann, Valeria Kagramanova, Jutta Kunz et al., Physi. Rev. D 78(12), 124018 (2008)
-
[10]
Valeria Kagramanova, Jutta Kunz, Eva Hackmann et al., Phys. Rev. D 81(12), 124044 (2010)
-
[11]
Eva Hackmann, Claus Lämmerzahl, Valeria Kagramanova et al., Phys. Rev. D 81(4), 044020 (2010)
-
[12]
Eva Hackmann, V. Kagramanova, J. Kunz et al., EPL 88(3), 30008 (2009)
-
[13]
Janna Levin and Gabe Perez-Giz, Phys. Rev. D 77(10), 103005 (2008)
-
[14]
Saskia Grunau and Valeria Kagramanova, Phys. Rev. D 83(4), 044009 (2011)
-
[15]
Edward Belbruno and Frans Pretorius, Classical and Quantum Gravity 28(19), 195007 (2011)
-
[16]
Leor Barack and Norichika Sago, Phys. Rev. D 83(8), 084023 (2011)
-
[17]
Daniela Pugliese, Hernando Quevedo, and Remo Ruffini, Phys. Rev. D 83(2), 024021 (2011)
-
[18]
Daniela Pugliese, Hernando Quevedo, and Remo Ruffini, Circular motion in reissner–nordström spacetime. In The Twelfth Marcel Grossmann Meeting: On Recent Developments in Theoretical and Experimental General Relativity, Astrophysics and Relativistic Field Theories (In 3 Volumes), pages 1017–1021. World Scientific, 2012
-
[19]
K. S. Virbhadra and G. F. R. Ellis, Phys. Rev. D 65(10), 103004 (2002)
-
[20]
K. S. Virbhadra and C. R. Keeton, Phys. Rev. D 77(12), 124014 (2008)
-
[21]
Parthapratim Pradhan and Parthasarathi Majumdar, Phys. Lett. A 375(3), 474-479 (2011)
-
[22]
Marco Olivares, Joel Saavedra, Carlos Leiva et al., Modern Physics Letters A 26(39), 2923-2950 (2011)
-
[23]
J. R. Villanueva, Joel Saavedra, Marco Olivares et al., Astrophysics and Space Science 344(2), 437-446 (2013)
-
[24]
Daniela Pugliese, Hernando Quevedo, and Remo Ruffini, Phys. Rev. D 83(10), 104052 (2011)
-
[25]
Daniela Pugliese, Hernando Quevedo, and Remo Ruffini, The European Physical Journal C 77(4), 1-18 (2017)
-
[26]
Stephen W Hawking, Particle creation by black holes. In Euclidean quantum gravity, pages 167–188. World Scientific, 1975
-
[27]
G. W. Gibbons and S. W. Hawking, Phys. Rev. D 15, 2752-2756 (1977)
-
[28]
Shahar Hod, Phys. Rev. Lett. 81(20), 4293 (1998)
-
[29]
Cenalo Vaz, Phys. Rev. D 61(6), 064017 (2000)
-
[30]
B. Harms and Y. Leblanc, Phys. Rev. D 46(6), 2334 (1992)
-
[31]
Gilad Gour, Phys. Rev. D 61(2), 021501 (1999)
-
[32]
Slimane Zaim and Hadjar Rezki, Gravitation and Cosmology 26(3), 200-207 (2020)
-
[33]
N. Mebarki, S. Zaim, L. Khodja et al., Physica Scripta 78(4), 045101 (2008)
-
[34]
Kourosh Nozari and Siamak Akhshabi. On the stability of planetary circular orbits in noncommutative spaces. arXiv preprint gr-qc/0608076, 2006
-
[35]
Kourosh Nozari, Siamak Akhshabi, and Nasser Sadeghnezhad, Acta Physica Polonica B 39(11), (2008)
-
[36]
Ravi Shankar Kuniyal, Rashmi Uniyal, Anindya Biswas et al., International Journal of Modern Physics A 33(16), 1850098 (2018)
-
[37]
B. Mirza and M. Dehghani, Communications in Theoretical Physics 42(2), 183 (2004)
-
[38]
Juan M. Romero and J. David Vergara, Modern Physics Letters A 18(24), 1673-1680 (2003)
-
[39]
Sehrish Iftikhar, Particle dynamics around a charged black hole. In EPJ Web of Conferences, volume 168, page 04006. EDP Sciences, 2018
-
[40]
S. C. Ulhoa, R. G. G. Amorim, and A. F. Santos, General Relativity and Gravitation 46(7), 1760 (2014)
-
[41]
Alexis Larranaga, Geodesic structure of the noncommutative schwarzschild anti-de sitter black hole i: timelike geodesics. arXiv preprint arXiv: 1110.0778, 2011
-
[42]
Kourosh Nozari and Siamak Akhshabi, EPL (Europhysics Letters) 80(2), 20002 (2007)
-
[43]
Piero Nicolini, International Journal of Modern Physics A 24(07), 1229-1308 (2009)
-
[44]
Piyali Bhar, Farook Rahaman, Ritabrata Biswas et al., Communications in Theoretical Physics 64(1), 1 (2015)
-
[45]
F. Rahaman, I. Radinschi, U. F. Mondal et al., International Journal of Theoretical Physics 54(3), 1038-1051 (2015)
-
[46]
Paolo Aschieri, Christian Blohmann, Marija Dimitrijevic et al., Class. Quant. Grav. 22, 3511-3532 (2005)
-
[47]
Paolo Aschieri, Marija Dimitrijevic, Frank Meyer et al., Class. Quant. Grav. 23, 1883-1912 (2006)
-
[48]
M. Chaichian, A. Tureanu, R. B. Zhang et al., J. Math. Phys. 49, 073511 (2008)
-
[49]
Ding Wang, R. B. Zhang, and Xiao Zhang, Class. Quant. Grav. 26, 085014 (2009)
-
[50]
J. Madore and J. Mourad, J. Math. Phys. 39, 423-442 (1998)
-
[51]
Nathan Seiberg and Edward Witten, Journal of High Energy Physics 1999(09), 032 (1999)
-
[52]
Masud Chaichian, Anca Tureanu, and G. Zet, Phys. Lett. B 660(5), 573-578 (2008)
-
[53]
Ioannis Haranas and Omiros Ragos, Astrophysics and Space Science 334(1), 71-74 (2011)
-
[54]
Ioannis Haranas and Ioannis Gkigkitzis, Astrophysics and Space Science 347(1), 77-82 (2013)
-
[55]
Ali H. Chamseddine, Phys. Lett. B 504(1-2), 33-37 (2001)
-
[56]
Masud Chaichian, Anca Tureanu, M. R. Setare et al., Journal of High Energy Physics 2008(04), 064 (2008)
-
[57]
Pradip Mukherjee and Anirban Saha, Phys. Rev. D 77(6), 064014 (2008)
-
[58]
Sean A. Hayward, Phys. Rev. Lett. 96(3), 031103 (2006)
-
[59]
G. Abbas and U. Sabiullah, Astrophysics and Space Science 352(2), 769-774 (2014)
-
[60]
Jian-Ping Hu, Li-Li Shi, Yu Zhang et al., Astrophysics and Space Science 363(10), 1-8 (2018)
-
[61]
Omar Pedraza, L. A. López, R. Arceo et al., General Relativity and Gravitation 53(3), 1-17 (2021)
-
[62]
D. I. Kazakov and S. N. Solodukhin, Nucl. Phys. B 429(1), 153-176 (1994)
-
[63]
Xue-Mei Deng, Physics of the Dark Universe 30, 100629 (2020)
-
[64]
Kourosh Nozari and Milad Hajebrahimi, Geodesic structure of the quantum-corrected schwarzschild black hole surrounded by quintessence. arXiv preprint arXiv: 2004.14775, 2020
-
[65]
Marek A. Abramowicz and P. Chris Fragile, Living Reviews in Relativity 16(1), 1-88 (2013)
-
[66]
Daniela Pérez, Gustavo E. Romero, and S. E. Perez Bergliaffa, Astronomy & Astrophysics 551, A4 (2013)
-
[67]
M. Jaroszynski, M. A. Abramowicz, and B. Paczynski, Acta Astronomica 30, 1-34 (1980)
-
[68]
Sandip K. Chakrabarti and Lev G. Titarchuk, Spectral properties of accretion disks around galactic and extragalactic black holes. arXiv preprint astro-ph/9510005, 1995.
-
[69]
Daniel W. Weedman, Quasar astronomy. Number 10. Cambridge University Press, 1988
-
[70]
Bradley, Peterson. Quasar. https://www.britannica.com/science/quasar. Online; Accessed 18 September 2021
-
[71]
Vedant Misra and Janna Levin, Phys. Rev. D 82(8), 083001 (2010)
-
[72]
Moonju Hong, Motion of a test particle in the reissner-nordstrom spacetime. arXiv preprint arXiv: 1709.08978, 2017
-
[73]
Gregory S. Adkins and Jordan McDonnell, Phys. Rev. D 75(8), 082001 (2007)
-
[74]
Sándor Benczik, Lay Nam Chang, Djordje Minic et al., Physi. Rev. D 66(2), 026003 (2002)