- [1]
D. Lovelock, J. Math. Phys.12, 498-501 (1971)
- [2]
T. Clifton, P. G. Ferreira, A. Padillaet al., Phys. Rept.513, 1 (2012), arXiv:1106.2476[astro-ph.CO
- [3]
D. Glavan and C. Lin, Phys. Rev. Lett.124(8), 081301 (2020), arXiv:1905.03601[gr-qc
- [4]
P. G. S. Fernandes, Phys. Lett. B805, 135468 (2020), arXiv:2003.05491[gr-qc
- [5]
A. Casalino, A. Colleaux, M. Rinaldiet al.,Regularized Lovelock gravity, arXiv: 2003.07068[gr-qc]
- [6]
R. A. Konoplya and A. Zhidenko, Phys. Rev. D101(8), 084038 (2020), arXiv:2003.07788[gr-qc
- [7]
R. A. Konoplya and A. Zhidenko,BTZ black holes with higher curvature corrections in the 3D Einstein-Lovelock theory, arXiv: 2003.12171[gr-qc]
- [8]
S. Nojiri and S. D. Odintsov, EPL130(1), 10004 (2020), arXiv:2004.01404
- [9]
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]
- [10]
R. Kumar and S. G. Ghosh, JCAP07(07), 053 (2020), arXiv:2003.08927[gr-qc
- [11]
S. G. Ghosh and S. D. Maharaj, Phys. Dark Univ.30, 100687 (2020), arXiv:2003.09841[gr-qc
- [12]
S. G. Ghosh and R. Kumar,Generating black holes in the novel 4DEinstein-Gauss-Bonnet gravity,arXiv: 2003.12291[gr-qc]
- [13]
D. V. Singh, S. G. Ghosh, and S. D. Maharaj,Clouds of string in 4Dnovel Einstein-GaussBonnet black holes, arXiv: 2003.14136[gr-qc]
- [14]
A. Kumar and S. G. Ghosh,Hayward black holes in the novel4DEinstein-Gauss-Bonnet gravity, arXiv: 2004.01131[gr-qc]
- [15]
A. Kumar and R. Kumar,Bardeen black holes in the novel 4DEinstein-Gauss-Bonnet gravity, arXiv: 2003.13104[gr-qc]
- [16]
D. D. Doneva and S. S. Yazadjiev,Relativistic stars in 4D Einstein-Gauss-Bonnet gravity, arXiv: 2003.10284[gr-qc]
- [17]
P. Liu, C. Niu, Xiaobao Wanget al.,Traversable Thin-shell Wormhole in the Novel 4D Einstein-Gauss-Bonnet Theory, arXiv: 2004.14267[gr-qc]
- [18]
T. Kobayashi, JCAP07, 013 (2020), arXiv:2003.12771[gr-qc
- [19]
H. Lu and Y. Pang, Phys. Lett. B809, 135717 (2020), arXiv:2003.11552
- [20]
P. G. S. Fernandes, P. Carrilho, T. Cliftonet al., Phys. Rev. D102(2), 024025 (2020), arXiv:2004.08362
- [21]
Robie A. Hennigar, David Kubiznak, and Robert B. Mann, JHEP07, 027 (2020), arXiv:2004.09472[gr-qc
- [22]
W. Y. Ai, Commun. Theor. Phys.72(9), 095402 (2020), arXiv:2004.02858
- [23]
K. Aoki, M. Ali Gorji, and S. Mukohyama,Consistent theory ofD→ 4 Einstein-Gauss-Bonnet gravity, arXiv: 2005.03859[gr-qc]
- [24]
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]
- [25]
R. A. Konoplya and A. Zhidenko, Phys. Dark Univ.30, 100697 (2020), arXiv:2003.12492[gr-qc
- [26]
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]
- [27]
M. S. Churilova,Quasinormal modes of the Dirac field in the novel 4D Einstein-GaussBonnet gravity, arXiv: 2004.00513[gr-qc]
- [28]
A. K. Mishra,Quasinormal modes and Strong Cosmic Censorship in the novel 4D EinsteinGauss-Bonnet gravity, arXiv: 2004.01243[gr-qc]
- [29]
S. L. Li, P. Wu, and H. Yu,Stability of the Einstein Static Universe in 4D Gauss-Bonnet Gravity, arXiv: 2004.02080[gr-qc]
- [30]
A. Aragón, R. Bécar, P. A. Gonzálezet al.,Perturbative and nonperturbative quasinormal modes of 4D Einstein-Gauss-Bonnet black holes, arXiv: 2004.05632[gr-qc]
- [31]
S.-J. Yang, J.-J. Wan, J. Chenet al.,Weak cosmic censorship conjecture for the novel 4D charged Einstein-Gauss-Bonnet black hole with test scalar field and particle, arXiv: 2004.07934
- [32]
P. Liu, C. Niu, and C.-Y. Zhang,Instability of the Novel 4D Charged Einstein-Gauss-Bonnet Anti de-Sitter Black Hole, arXiv: 2005.01507[gr-qc]
- [33]
C. Y. Zhang, P. C. Li, and M. Guo,Greybody factor and power spectra of the Hawking radiation in the 4D Einstein-Gauss-Bonnet de-Sitter gravity, accepted by EPJC. arXiv: 2003.13068
- [34]
C. Y. Zhang, P. C. Li, and M. Guo, JHEP2008, 105 (2020), arXiv:2004.03141
- [35]
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]
- [36]
M. Guo and P. C. Li, Eur. Phys. J. C80(6), 588 (2020), arXiv:2003.02523[gr-qc
- [37]
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]]
- [38]
X. h. Jin, Y.-x. Gao, and D. j. Liu, Int. J. Mod. Phys. D29(09), 2050065 (2020), arXiv:2004.02261[gr-qc
- [39]
Y. P. Zhang, S. W. Wei, and Y. X. Liu, Universe6(8), 103 (2020), arXiv:2003.10960[gr-qc
- [40]
S. U. Islam, R. Kumar, and S. G. Ghosh,Gravitational lensing by black holes in 4D4D Einstein-Gauss-Bonnet gravity, arXiv: 2004.01038[gr-qc]
- [41]
J. Rayimbaev, A. Abdujabbarov, B. Turimovet al.,Magnetized particle motion around 4-D Einstein-Gauss-Bonnet Black Hole, arXiv: 2004.10031[gr-qc]
- [42]
K. Hegde, A. N. Kumara, C. L. A. Rizwanet al.,Thermodynamics, Phase Transition and Joule Thomson Expansion of novel 4-D Gauss Bonnet AdS Black Hole, arXiv: 2003.08778[gr-qc]
- [43]
S. W. Wei and Y. X. Liu, Phys. Rev. D101(10), 104018 (2020), arXiv:2003.14275[gr-qc
- [44]
D. V. Singh and S. Siwach, Phys. Lett. B808, 135658 (2020), arXiv:2003.11754
- [45]
S. A. Hosseini Mansoori,Thermodynamic geometry of novel 4-D Gauss Bonnet AdS Black Hole, arXiv: 2003.13382[gr-qc]
- [46]
B. Eslam Panah and Kh. Jafarzade,4D Einstein-Gauss-Bonnet AdS Black Holes as Heat Engine, arXiv: 2004.04058[hep-th]
- [47]
S. Ying,Thermodynamics and Weak Cosmic Censorship Conjecture of 4D Gauss-BonnetMaxwell Black Holes via Charged Particle Absorption, arXiv: 2004.09480[gr-qc]
- [48]
D. Malafarina, B. Toshmatov, and N. Dadhich, Phys. Dark Univ.30, 100598 (2020), arXiv:2004.07089[gr-qc
- [49]
C. Liu, T. Zhu, and Q. Wu,Thin Accretion Disk around a four-dimensional Einstein-GaussBonnet Black Hole, arXiv: 2004.01662[gr-qc]
- [50]
A. Naveena Kumara, C. L. Ahmed Rizwan, K. Hegdeet al.,Rotating 4D Gauss-Bonnet black hole as particle accelerator, arXiv: 2004.04521[gr-qc]
- [51]
F.-W. Shu,Vacua in novel 4D Eisntein-Gauss-Bonnet Gravity: pathology and instability, arXiv: 2004.09339[gr-qc]
- [52]
K. Aoki, M. A. Gorji, and S. Mukohyama,A consistent theory ofD→ 4 EinsteinGaussBonnet gravity, [arXiv: 2005.03859[gr-qc]]
- [53]
K. Aoki, M. A. Gorji, and S. Mukohyama,Cosmology and gravitational waves in consistentD→ 4 Einstein-Gauss-Bonnet gravity, arXiv: 2005.08428 [gr-qc]
- [54]
R. G. Cai, L. M. Cao, and N. Ohta, JHEP104, 082 (2010), arXiv:0911.4379
- [55]
Y. Tomozawa,Quantum corrections to gravity, arXiv: 1107.1424[gr-qc]
- [56]
G. Cognola, R. Myrzakulov, L. Sebastianiet al., Phys. Rev. D88, 024006 (2013), arXiv:1304.1878
- [57]
R. A. Konoplya and A. Zhidenko, Rev. Mod. Phys.83, 793-836 (2011), arXiv:1102.4014[gr-qc
- [58]
E. Berti, V. Cardoso, and A. O. Starinets, Class. Quant. Grav.26, 163001 (2009), arXiv:0905.2975[gr-qc
- [59]
C. Y. Zhang, S. J. Zhang, and B. Wang, J. High Energy Phys.08, 011 (2014), arXiv:1405.3811
- [60]
V. Cardoso, J. a. L. Costa, K. Destouniset al., Phys. Rev. Lett.120(3), 031103 (2018), arXiv:1711.10502
- [61]
Y. Mo, Y. Tian, B. Wanget al., Phys. Rev. D98, 124025 (2018), arXiv:1808.03635[gr-qc
- [62]
H. Liu, Z. Tang, K. Destouniset al., JHEP03, 187 (2019), arXiv:1902.01865[gr-qc
- [63]
H. Zhang and Z. Zhong,Strong cosmic censorship in de Sitter space: As strong as ever, arXiv: 1910.01610[hep-th]
- [64]
R. A. Konoplya and A. Zhidenko, Phys. Rev. Lett.103, 161101 (2009), arXiv:0809.2822[hep-th
- [65]
R. A. Konoplya and A. Zhidenko, Phys. Rev. D89(2), 024011 (2014), arXiv:1309.7667[hep-th
- [66]
M. A. Cuyubamba, R. A. Konoplya, and A. Zhidenko, Phys. Rev. D93(10), 104053 (2016), arXiv:1604.03604[gr-qc
- [67]
P.-C. Li, C.-Y. Zhang, and B. Chen, JHEP1911, 042 (2019), arXiv:1909.02685[hep-th
- [68]
C. Y. Zhang, S. J. Zhang, D. C. Zouet al., Phys. Rev. D93(6), 064036 (2016), arXiv:1512.06472[gr-qc
- [69]
Z. Zhu, S.-J. Zhang, C. E. Pelliceret al., Phys. Rev. D90(4), 044042 (2014), Addendum: Phys. Rev. D90(4), 049904 (2014), arXiv: 1405.4931 [hep-th]
- [70]
R. A. Konoplya and A. Zhidenko, Phys. Rev. D90, 064048 (2014), arXiv:1406.0019[hep-th
- [71]
K. Destounis, Phys. Rev. D100(4), 044054 (2019), arXiv:1908.06117[gr-qc
- [72]
R. Brito, V. Cardoso, and P. Pani, Lect. Notes Phys.906, 1-237 (2015), arXiv:1501.06570[gr-qc
- [73]
C. Y. Zhang, S. J. Zhang, and B. Wang, Nucl. Phys. B899, 37 (2015), arXiv:1501.03260
- [74]
H. T. Cho, A. S. Cornell, J. Doukaset al., Class. Quant. Grav.27, 155004 (2010), arXiv:0912.2740
- [75]
H. T. Cho, A. S. Cornell, J. Doukaset al., Adv. Math. Phys.2012, 281705 (2012), arXiv:1111.5024[gr-qc
- [76]
R. L. H. H. Ciftci and N. Saad, Journal of Physics A36(47), 11807-11816 (2003), arXiv:math-ph/0309066
- [77]
R. L. H. H. Ciftci, and N. Saad, Physics Letters A340(5-6), 388-396 (2005), arXiv:math-ph/0504056
- [78]
K. A. Bronnikov, R. A. Konoplya, and A. Zhidenko, Phys. Rev. D86, 024028 (2012), arXiv:1205.2224
- [79]
R. Gregory and R. Laflamme, Phys. Rev. Lett.70, 2837-2840 (1993), arXiv:hep-th/9301052[hep-th
- [80]
S. Aretakis, J. Funct. Anal.263, 2770 (2012), arXiv:1110.2006[gr-qc
- [81]
S. Aretakis, Adv. Theor. Math. Phys.19, 507-530 (2015), arXiv:1206.6598[gr-qc
- [82]
S.-J. Zhang, Q. Pan, B. Wanget al., JHEP1309, 101 (2013), arXiv:1308.0635[hep-th