-
[1]
E. Berti, V. Cardoso, and A. O. Starinets, Class. Quant. Grav. 26, 163001 (2009), arXiv:0905.2975[gr-qc
-
[2]
R. A. Konoplya and A. Zhidenko, Rev. Mod. Phys. 83, 793-836 (2011), arXiv:1102.4014[gr-qc
-
[3]
P. Pani, E. Berti, and L. Gualtieri, Phys. Rev. Lett. 110, 241103 (2013), arXiv:1304.1160[gr-qc
-
[4]
O.J.C. Dias, M. Godazgar, and Santos J.R. Linear, Phys. Rev. Lett. 114, 151101 (2015), arXiv:1501.04625[gr-qc
-
[5]
R. Brito, V. Cardoso, and P. Pani, Lect. Notes Phys. 906, 1-237 (2015), arXiv:1501.06570[gr-qc
-
[6]
Z. Zhu, S.-J. Zhang, C. E. Pellicer et al., Phys. Rev. D 90(4), 044042 (2014), Addendum: Phys. Rev. D 90(4), 049904 (2014), arXiv: 1405.4931 [hep-th]
-
[7]
R. A. Konoplya and A. Zhidenko, Phys. Rev. D 90, 064048 (2014), arXiv:1406.0019[hep-th
-
[8]
C. Y. Zhang, S. J. Zhang, and B. Wang, JHEP 08, 011 (2014), arXiv:1405.3811
-
[9]
R. A. Konoplya and A. Zhidenko, Phys. Rev. Lett. 103, 161101 (2009), arXiv:0809.2822[hep-th
-
[10]
R. A. Konoplya and A. Zhidenko, Phys. Rev. D 89(2), 024011 (2014), arXiv:1309.7667[hep-th
-
[11]
C. Y. Zhang, S. J. Zhang, and B. Wang, Nucl. Phys. B 899, 37 (2015), arXiv:1501.03260
-
[12]
C. Y. Zhang, S. J. Zhang, D. C. Zou et al., Phys. Rev. D 93(6), 064036 (2016), arXiv:1512.06472[gr-qc
-
[13]
M. A. Cuyubamba, R. A. Konoplya, and A. Zhidenko, Phys. Rev. D 93(10), 104053 (2016), arXiv:1604.03604[gr-qc
-
[14]
C.-Y. Zhang, P.-C. Li, and B. Chen, Phys. Rev. D 97(4), 044013 (2018), arXiv:1712.00620
-
[15]
M. F. Wondrak, P. Nicolini, and J. W. Moffat, JCAP 1812, 021 (2018), arXiv:1809.07509[gr-qc
-
[16]
P.-C. Li, C.-Y. Zhang, and B. Chen, JHEP 1911, 042 (2019), arXiv:1909.02685[hep-th
-
[17]
M. Khodadi, A. Talebian, and H. Firouzjahi, Black Hole Superradiance in f(R) Gravities, arXiv: 2002.10496 [gr-qc]
-
[18]
P.-C. Li and C.-Y. Zhang, Phys. Rev. D 99(2), 024030 (2019), arXiv:1901.05749[hep-th
-
[19]
D. Glavan and C. Lin, Phys. Rev. Lett. 124(8), 081301 (2020), arXiv:1905.03601[gr-qc
-
[20]
P. G. S. Fernandes, Phys. Lett. B 805, 135468 (2020), arXiv:2003.05491[gr-qc
-
[21]
A. Casalino, A. Colleaux, M. Rinaldi et al., Regularized Lovelock gravity, arXiv: 2003.07068 [gr-qc]
-
[22]
R. A. Konoplya and A. Zhidenko, Phys. Rev. D 101(8), 084038 (2020), arXiv:2003.07788[gr-qc
-
[23]
R. A. Konoplya and A. Zhidenko, BTZ black holes with higher curvature corrections in the 3D Einstein-Lovelock theory, arXiv: 2003.12171 [gr-qc]
-
[24]
S. W. Wei and Y. X. Liu, Testing the nature of Gauss-Bonnet gravity by four-dimensional rotating black hole shadow, arXiv: 2003.07769 [gr-qc]
-
[25]
R. Kumar and S. G. Ghosh, JCAP 07(07), 053 (2020), arXiv:2003.08927[gr-qc
-
[26]
S. G. Ghosh and S. D. Maharaj, Phys. Dark Univ. 30, 100687 (2020), arXiv:2003.09841[gr-qc
-
[27]
S. G. Ghosh and R. Kumar, Generating black holes in the novel 4D Einstein-Gauss-Bonnet gravity, arXiv: 2003.12291 [gr-qc]
-
[28]
A. Kumar and S. G. Ghosh, Hayward black holes in the novel 4D Einstein-Gauss-Bonnet gravity, arXiv: 2004.01131 [gr-qc]
-
[29]
A. Kumar and R. Kumar, Bardeen black holes in the novel 4D Einstein-Gauss-Bonnet gravity, arXiv: 2003.13104 [gr-qc]
-
[30]
D. D. Doneva and S. S. Yazadjiev, Relativistic stars in 4D Einstein-Gauss-Bonnet gravity, arXiv: 2003.10284 [gr-qc]
-
[31]
P. Liu, C. Niu, X. Wang et al., Thin-shell wormhole in the novel 4D Einstein-GaussBonnet theory, arXiv: 2004.14267 [gr-qc]
-
[32]
K. Jusufi, A. Banerjee, and S. G. Ghosh, Eur. Phys. J. C 80(8), 698 (2020), arXiv:2004.10750[gr-qc
-
[33]
L. Ma and H. Lu, Vacua and Exact Solutions in Lower-D Limits of EGB, arXiv: 2004.14738 [gr-qc]
-
[34]
H. Lu and P. Mao, Asymptotic structure of Einstein-Gauss-Bonnet theory in lower dimensions, arXiv: 2004.14400 [hep-th]
-
[35]
K. Yang, B. M. Gu, S. W. Wei et al., Born-Infeld Black Holes in novel 4D EinsteinGauss-Bonnet gravity, arXiv: 2004.14468 [gr-qc]
-
[36]
S. G. Ghosh and S. D. Maharaj, Noncommutative inspired black holes in regularised 4D EinsteinGauss-Bonnet theory, arXiv: 2004.13519 [gr-qc]
-
[37]
T. Kobayashi, JCAP 07, 013 (2020), arXiv:2003.12771[gr-qc
-
[38]
H. Lu and Y. Pang, Phys. Lett. B 809, 135717 (2020), arXiv:2003.11552
-
[39]
P. G. S. Fernandes, P. Carrilho, T. Clifton et al., Phys. Rev. D 102(2), 024025 (2020), arXiv:2004.08362
-
[40]
Robie A. Hennigar, David Kubiznak, and Robert B. Mann, JHEP 07, 027 (2020), arXiv:2004.09472[gr-qc
-
[41]
S. Mahapatra, A note on the total action of 4D Gauss-Bonnet theory, arXiv: 2004.09214
-
[42]
W. Y. Ai, Commun. Theor. Phys. 72(9), 095402 (2020), arXiv:2004.02858
-
[43]
F. W. Shu, Vacua in novel 4D Einstein-Gauss-Bonnet Gravity: pathology and instability? arXiv: 2004.09339 [gr-qc]
-
[44]
K. Aoki, M. A. Gorji, and S. Mukohyama, A consistent theory of D → 4 EinsteinGaussBonnet gravity, arXiv: 2005.03859 [gr-qc]
-
[45]
K. Aoki, M. A. Gorji, and S. Mukohyama, Cosmology and gravitational waves in consistent D → 4 Einstein-Gauss-Bonnet gravity, arXiv: 2005.08428 [gr-qc]
-
[46]
R. A. Konoplya and A. F. Zinhailo, Quasinormal modes, stability and shadows of a black hole in the novel 4D Einstein-Gauss-Bonnet gravity, arXiv: 2003.01188 [gr-qc]
-
[47]
R. A. Konoplya and A. Zhidenko, (In)stability of black holes in the 4D Einstein-Gauss-Bonnet and Einstein-Lovelock gravities, arXiv: 2003.12492 [gr-qc]
-
[48]
R. A. Konoplya and A. F. Zinhailo, Grey-body factors and Hawking radiation of black holes in 4D Einstein-Gauss-Bonnet gravity, arXiv: 2004.02248 [gr-qc]
-
[49]
M. S. Churilova, Quasinormal modes of the Dirac field in the novel 4D Einstein-Gauss-Bonnet gravity, arXiv: 2004.00513 [gr-qc]
-
[50]
A. K. Mishra, Quasinormal modes and Strong Cosmic Censorship in the novel 4D EinsteinGauss-Bonnet gravity, arXiv: 2004.01243 [gr-qc]
-
[51]
S. L. Li, P. Wu, and H. Yu, Stability of the Einstein Static Universe in 4D Gauss-Bonnet Gravity, arXiv: 2004.02080 [gr-qc]
-
[52]
A. Aragón, R. Bécar, P. A. Gonzélez et al., Perturbative and nonperturbative quasinormal modes of 4D Einstein-Gauss-Bonnet black holes, arXiv: 2004.05632 [gr-qc]
-
[53]
S.-J. Yang, J.-J. Wan, J. Chen et al., Weak cosmic censorship conjecture for the novel 4D charged Einstein-Gauss-Bonnet black hole with test scalar field and particle, arXiv: 2004.07934
-
[54]
C. Y. Zhang, P. C. Li, and M. Guo, Eur. Phys. J. C 80(9), 874 (2020), arXiv:2003.13068
-
[55]
S. Devi, R.v Roy, and S. Chakrabarti, Quasinormal modes and greybody factors of the novel four-dimensional Gauss-Bonnet black holes in asymptotically de Sitter space time: Scalar, Electromagnetic and Dirac perturbations, arXiv: 2004.14935 [gr-qc]
-
[56]
M. S. Churilova, Quasinormal modes of the test fields in the novel 4D Einstein-Gauss-Bonnetde Sitter gravity, arXiv: 2004.14172 [gr-qc]
-
[57]
Alessandro Casalino and Lorenzo Sebastiani, Perturbations in Regularized Lovelock Gravity, arXiv: 2004.10229 [gr-qc]
-
[58]
M. A. Cuyubamba, Stability of asymptotically de Sitter and anti-de Sitter black holes in 4D regularized Einstein-Gauss-Bonnet theory, arXiv: 2004.09025 [gr-qc]
-
[59]
K. Jusufi, Nonlinear magnetically charged black holes in 4D Einstein-Gauss-Bonnet gravity, arXiv: 2005.00360 [gr-qc]
-
[60]
C. Y. Zhang, P. C. Li, and M. Guo, JHEP 2008, 105 (2020), arXiv:2004.03141[gr-qc
-
[61]
P. Liu, C. Niu, and C. Y. Zhang, Instability of the regulized 4D charged Einstein-Gauss-Bonnet de-Sitter black hole, arXiv: 2004.10620 [gr-qc]
-
[62]
M. Guo and P. C. Li, Eur. Phys. J. C 80(6), 588 (2020), arXiv:2003.02523[gr-qc
-
[63]
M. Heydari-Fard, M. Heydari-Fard, and H. R. Sepangi, Bending of light in novel 4D GaussBonnet-de Sitter black holes by Rindler-Ishak method, arXiv: 2004.02140 [gr-qc]
-
[64]
R. Roy and S. Chakrabarti, A study on black hole shadows in asymptotically de Sitter spacetimes, arXiv: 2003.14107 [gr-qc]
-
[65]
X. h. Jin, Y.-x. Gao, and D. j. Liu, Int. J. Mod. Phys. D 29(09), 2050065 (2020), arXiv:2004.02261[gr-qc
-
[66]
Y. P. Zhang, S. W. Wei, and Y. X. Liu, Universe 6(8), 103 (2020), arXiv:2003.10960[gr-qc
-
[67]
S. U. Islam, R. Kumar, and S. G. Ghosh, Gravitational lensing by black holes in 4D EinsteinGauss-Bonnet gravity, arXiv: 2004.01038 [gr-qc]
-
[68]
X. X. Zeng, H. Q. Zhang, and H. Zhang, Shadows and photon spheres with spherical accretions in the four-dimensional Gauss-Bonnet black hole, arXiv: 2004.12074 [gr-qc]
-
[69]
K. Hegde, A. N. Kumara, C. L. A. Rizwan et al., Thermodynamics, Phase Transition and Joule Thomson Expansion of novel 4-D Gauss Bonnet AdS Black Hole, arXiv: 2003.08778 [gr-qc]
-
[70]
S. W. Wei and Y. X. Liu, Phys. Rev. D 101(10), 104018 (2020), arXiv:2003.14275[gr-qc
-
[71]
D. V. Singh and S. Siwach, Phys. Lett. B 808, 135658 (2020), arXiv:2003.11754[gr-qc
-
[72]
S. A. Hosseini Mansoori, Thermodynamic geometry of novel 4-D Gauss Bonnet AdS Black Hole, arXiv: 2003.13382 [gr-qc]
-
[73]
B. Eslam Panah and Kh. Jafarzade, 4D Einstein-Gauss-Bonnet AdS Black Holes as Heat Engine, arXiv: 2004.04058 [hep-th]
-
[74]
S. Ying, Thermodynamics and Weak Cosmic Censorship Conjecture of 4D Gauss-BonnetMaxwell Black Holes via Charged Particle Absorption, arXiv: 2004.09480 [gr-qc]
-
[75]
C. Liu, T. Zhu, and Q. Wu, Thin Accretion Disk around a four-dimensional Einstein-GaussBonnet Black Hole, arXiv: 2004.01662 [gr-qc]
-
[76]
A. Naveena Kumara, C.L. Ahmed Rizwan, K. Hegde et al., Rotating 4D Gauss-Bonnet black hole as particle accelerator, arXiv: 2004.04521 [gr-qc]
-
[77]
F.-W. Shu, Vacua in novel 4D Eisntein-Gauss-Bonnet Gravity: pathology and instability, arXiv: 2004.09339 [gr-qc]
-
[78]
D. Malafarina, B. Toshmatov, and N. Dadhich, Phys. Dark Univ. 30, 100598 (2020), arXiv:2004.07089[gr-qc
-
[79]
R. G. Cai, L. M. Cao, and N. Ohta, JHEP 1004, 082 (2010), arXiv:0911.4379
-
[80]
Y. Tomozawa, Quantum corrections to gravity, arXiv: 1107.1424 [gr-qc]
-
[81]
G. Cognola, R. Myrzakulov, L. Sebastiani et al., Phys. Rev. D 88(2), 024006 (2013), arXiv:1304.1878
-
[82]
Y. Ling, P. Liu, C. Niu et al., JHEP 1604, 114 (2016)
-
[83]
Y. Ling, P. Liu, and J. P. Wu, Phys. Rev. D 93(12), 126004 (2016)
-
[84]
Y. Ling, P. Liu, J. P. Wu et al., Phys. Lett. B 766, 41 (2017), arXiv:1606.07866[hep-th
-
[85]
Y. Ling, P. Liu, J. P. Wu et al., Chin. Phys. C 42(1), 013106 (2018), arXiv:1711.07720[hep-th
-
[86]
G. T. Horowitz and V. E. Hubeny, Phys. Rev. D 62, 024027 (2000), arXiv:hep-th/9909056[hep-th
-
[87]
B. Wang, C. Lin, and E. Abdalla, Phys. Lett. B 481, 79-88 (2000), arXiv:hep-th/0003295[hep-th
-
[88]
R. Konoplya, Phys. Lett. B 550, 117-120 (2002), arXiv:gr-qc/0210105[gr-qc
-
[89]
G. Siopsis, JHEP 05, 042 (2007), arXiv:hep-th/0702079[hep-th
-
[90]
J. Jing and Q. Pan, Nucl. Phys. B 728, 109-120 (2005), arXiv:gr-qc/0506098[gr-qc
-
[91]
R. Li, H. Zhang, and J. Zhao, Phys. Lett. B 758, 359-364 (2016), arXiv:1604.01267[gr-qc
-
[92]
A. Jansen, Eur. Phys. J. Plus 132(12), 546 (2017), arXiv:1709.09178[gr-qc
-
[93]
G. Fu and J. P. Wu, Adv. High Energy Phys. 2019, 5472310 (2019), arXiv:1812.11522[hep-th
-
[94]
J. P. Wu and P. Liu, Phys. Lett. B 780, 616 (2018), arXiv:1804.10897[hep-th
-
[95]
M. Baggioli and S. Grieninger, JHEP 10, 235 (2019), arXiv:1905.09488[hep-th
-
[96]
John P Boyd. Chebyshev and Fourier spectral methods. Courier Corporation, 2001