Charged analogues of singularity-free anisotropic compact stars under linear f(Q)-action

被引:4
作者
Bhattacharjee, Debadri [1 ]
Chattopadhyay, Pradip Kumar [1 ]
机构
[1] Coochbehar Panchanan Barma Univ, IUCAA Ctr Astron Res & Dev ICARD, Dept Phys, Vivekananda St, Cooch Behar 736101, W Bengal, India
关键词
f(Q) gravity; Charge; Equation of state; Maximum mass; Exact solution; EQUATION-OF-STATE; NEUTRON-STAR; FIELD-EQUATIONS; STRANGE STAR; MAXIMUM MASS; STABILITY; RADIUS; F(Q); GRAVITATION; REDSHIFT;
D O I
10.1016/j.cjph.2025.02.008
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
This study simulates the characteristics of spherically symmetric, anisotropic compact stellar bodies with electrical charge within the framework of the f(Q) theory of gravity. Employing the Krori-Barua metric ansatz (K.D. Krori, J. Barua, J. Phys. A: Math. Gen. 8 (1975) 508) along with a linear form of f(Q) model, viz., f(Q) = a0 +a1Q, we obtain a tractable set of exact relativistic solutions of the field equations. A specific form of charge (q = q0r3) is considered here for the present analysis. It is noted that the model is valid up to the value of charge intensity q0 <= 0.0009 Km-2. Beyond this value, the model does not permit physically viable results. We have obtained the best fit equation of state in the model, which is incorporated to solve the TOV equations numerically to determine the mass-radius relation within the parameter space used here. With increasing charge intensity (q0) from 0.0002 to 0.0009, the maximum mass ranges from 2.84-2.92 M ae, and the corresponding radii range from 12.00-12.20 Km. Moreover, the predicted radii of some recently observed pulsars and GW 190814 show that our model also complies with the estimated radii based on the observational results. Our model is found to satisfy all the characteristic features, such as behaviour of matter variables, causality condition, energy constraints and stability criteria, which are pertinent in the context of a stable stellar configuration to emerge as a viable and physically acceptable stellar model in the framework of f(Q) gravity.
引用
收藏
页码:650 / 669
页数:20
相关论文
共 104 条
[1]   GW190814: Gravitational Waves from the Coalescence of a 23 Solar Mass Black Hole with a 2.6 Solar Mass Compact Object [J].
Abbott, R. ;
Abbott, T. D. ;
Abraham, S. ;
Acernese, F. ;
Ackley, K. ;
Adams, C. ;
Adhikari, R. X. ;
Adya, V. B. ;
Affeldt, C. ;
Agathos, M. ;
Agatsuma, K. ;
Aggarwal, N. ;
Aguiar, O. D. ;
Aich, A. ;
Aiello, L. ;
Ain, A. ;
Ajith, P. ;
Akcay, S. ;
Allen, G. ;
Allocca, A. ;
Altin, P. A. ;
Amato, A. ;
Anand, S. ;
Ananyeva, A. ;
Anderson, S. B. ;
Anderson, W. G. ;
Angelova, S., V ;
Ansoldi, S. ;
Antier, S. ;
Appert, S. ;
Arai, K. ;
Araya, M. C. ;
Areeda, J. S. ;
Arne, M. ;
Arnaud, N. ;
Aronson, S. M. ;
Arun, K. G. ;
Asali, Y. ;
Ascenzi, S. ;
Ashton, G. ;
Aston, S. M. ;
Astone, P. ;
Aubin, F. ;
Aufmuth, P. ;
AultONeal, K. ;
Austin, C. ;
Avendano, V ;
Babak, S. ;
Bacon, P. ;
Badaracco, F. .
ASTROPHYSICAL JOURNAL LETTERS, 2020, 896 (02)
[2]   Sound speeds, cracking and the stability of self-gravitating anisotropic compact objects [J].
Abreu, H. ;
Hernandez, H. ;
Nunez, L. A. .
CLASSICAL AND QUANTUM GRAVITY, 2007, 24 (18) :4631-4645
[3]   The mass of the compact object in the X-ray binary her X-1/HZ Her [J].
Abubekerov, M. K. ;
Antokhina, E. A. ;
Cherepashchuk, A. M. ;
Shimanskii, V. V. .
ASTRONOMY REPORTS, 2008, 52 (05) :379-389
[4]   Physical analysis of anisotropic compact stars in f(Q) gravity [J].
Adeel, Muhammad ;
Gul, M. Zeeshan ;
Rani, Shamaila ;
Jawad, Abdul .
MODERN PHYSICS LETTERS A, 2023, 38 (34N35)
[5]   First evidence that non-metricity f (Q) gravity could challenge ΛCDM [J].
Anagnostopoulos, Fotios K. ;
Basilakos, Spyros ;
Saridakis, Emmanuel N. .
PHYSICS LETTERS B, 2021, 822
[6]  
[Anonymous], 1918, AFDEL NATUURK
[7]   Observational constraints on cosmological solutions of f(Q) theories [J].
Ayuso, Ismael ;
Lazkoz, Ruth ;
Salzano, Vincenzo .
PHYSICAL REVIEW D, 2021, 103 (06)
[8]   Bouncing cosmology in f(Q) symmetric teleparallel gravity [J].
Bajardi, Francesco ;
Vernieri, Daniele ;
Capozziello, Salvatore .
EUROPEAN PHYSICAL JOURNAL PLUS, 2020, 135 (11)
[9]   Di-Higgs resonance searches in weak boson fusion [J].
Barman, Rahool Kumar ;
Englert, Christoph ;
Goncalves, Dorival ;
Spannowsky, Michael .
PHYSICAL REVIEW D, 2020, 102 (05)
[10]   Testing F (Q) gravity with redshift space distortions [J].
Barros, Bruno J. ;
Barreiro, Tiago ;
Koivisto, Tomi ;
Nunes, Nelson J. .
PHYSICS OF THE DARK UNIVERSE, 2020, 30