Cloud of strings and quintessence compact stars with anisotropic fluid in symmetric teleparallel gravity

被引:2
作者
Ditta, Allah [1 ,2 ]
Xia, Tiecheng [1 ,2 ]
Asia, Munaza [3 ]
Mahmood, Irfan [3 ]
机构
[1] Shanghai Univ, Dept Math, Shanghai 200444, Peoples R China
[2] Shanghai Univ, Newtouch Ctr Math, Shanghai 200444, Peoples R China
[3] Univ Punjab, Ctr High Energy Phys, Lahore, Pakistan
基金
中国国家自然科学基金;
关键词
Gravitation; cosmology; modified gravity; f(Q) gravity; cloud and quintessence; DARK ENERGY; FIELD-EQUATIONS; CRACKING; SPHERES; MODELS;
D O I
10.1142/S0219887824500762
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The construction of compact star models with quintessence and cloud of strings anisotropic fluid lays the foundation for the research presented in this paper, which focuses on the ansatz of f(Q) gravity. We utilized a spherically symmetric spacetime to derive the field equations incorporating quintessence and cloud of strings anisotropic matter fields. The well-known Karmarkar condition was employed to obtain the gravitational components of the spherically symmetric spacetime. The constant parameters used in the study were obtained by applying junction conditions on the interior and exterior spacetimes. We used the mass and radius of PSRJ1614 - 2230&SMCX - 1, which are already present in the literature. Afterward, we calculated the important properties of quintessence stars in the presence of cloud of strings to ensure the stability and physical presence of compact models. To achieve this goal, we studied features such as energy density, quintessence density, pressure profiles, gradients, anisotropic factor, energy conditions, sound speeds, TOV forces, EoS components, mass function, compactification and redshift.
引用
收藏
页数:29
相关论文
共 85 条
[1]   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
[2]   Planck 2013 results. XVI. Cosmological parameters [J].
Ade, P. A. R. ;
Aghanim, N. ;
Armitage-Caplan, C. ;
Arnaud, M. ;
Ashdown, M. ;
Atrio-Barandela, F. ;
Aumont, J. ;
Baccigalupi, C. ;
Banday, A. J. ;
Barreiro, R. B. ;
Bartlett, J. G. ;
Battaner, E. ;
Benabed, K. ;
Benoit, A. ;
Benoit-Levy, A. ;
Bernard, J. -P. ;
Bersanelli, M. ;
Bielewicz, P. ;
Bobin, J. ;
Bock, J. J. ;
Bonaldi, A. ;
Bond, J. R. ;
Borrill, J. ;
Bouchet, F. R. ;
Bridges, M. ;
Bucher, M. ;
Burigana, C. ;
Butler, R. C. ;
Calabrese, E. ;
Cappellini, B. ;
Cardoso, J. -F. ;
Catalano, A. ;
Challinor, A. ;
Chamballu, A. ;
Chary, R. -R. ;
Chen, X. ;
Chiang, H. C. ;
Chiang, L. -Y ;
Christensen, P. R. ;
Church, S. ;
Clements, D. L. ;
Colombi, S. ;
Colombo, L. P. L. ;
Couchot, F. ;
Coulais, A. ;
Crill, B. P. ;
Curto, A. ;
Cuttaia, F. ;
Danese, L. ;
Davies, R. D. .
ASTRONOMY & ASTROPHYSICS, 2014, 571
[3]   Sharp bounds on 2m/r of general spherically symmetric static objects [J].
Andreasson, Hakan .
JOURNAL OF DIFFERENTIAL EQUATIONS, 2008, 245 (08) :2243-2266
[4]  
[Anonymous], 2010, Beyond Einstein Gravity
[5]  
Bahamonde S., 2022, ARXIV, DOI DOI 10.48550/ARXIV.2210.05998
[6]   Dark energy cosmology: the equivalent description via different theoretical models and cosmography tests [J].
Bamba, Kazuharu ;
Capozziello, Salvatore ;
Nojiri, Shin'ichi ;
Odintsov, Sergei D. .
ASTROPHYSICS AND SPACE SCIENCE, 2012, 342 (01) :155-228
[7]   GRAVITATIONAL-FIELD OF A GLOBAL MONOPOLE [J].
BARRIOLA, M ;
VILENKIN, A .
PHYSICAL REVIEW LETTERS, 1989, 63 (04) :341-343
[8]   Cosmological relativity: A new theory of cosmology [J].
Behar, S ;
Carmeli, M .
INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 2000, 39 (05) :1375-1396
[9]   Cosmology in f (Q) geometry [J].
Beltran Jimenez, Jose ;
Heisenberg, Lavinia ;
Koivisto, Tomi ;
Pekar, Simon .
PHYSICAL REVIEW D, 2020, 101 (10)
[10]   Teleparallel Palatini theories [J].
Beltran Jimenez, Jose ;
Heisenberg, Lavinia ;
Koivisto, Tomi S. .
JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2018, (08)