Abstract

We use the Markov Chain Monte Carlo method to investigate a global constraints on the modified Chaplygin gas (MCG) model as the unification of dark matter and dark energy from the latest observational data: the Union2 dataset of type supernovae Ia (SNIa), the observational Hubble data (OHD), the cluster X-ray gas mass fraction, the baryon acoustic oscillation (BAO), and the cosmic microwave background (CMB) data. In a flat universe, the constraint results for MCG model are, Ξ©bh2=0.02263βˆ’0.00162+0.00184\Omega_{b}h^{2}=0.02263^{+0.00184}_{-0.00162} (1Οƒ1\sigma) βˆ’0.00195+0.00213^{+0.00213}_{-0.00195} (2Οƒ)(2\sigma), Bs=0.7788βˆ’0.0723+0.0736B_{s}=0.7788^{+0.0736}_{-0.0723} (1Οƒ1\sigma) βˆ’0.0904+0.0918^{+0.0918}_{-0.0904} (2Οƒ)(2\sigma), Ξ±=0.1079βˆ’0.2539+0.3397\alpha=0.1079^{+0.3397}_{-0.2539} (1Οƒ1\sigma) βˆ’0.2911+0.4678^{+0.4678}_{-0.2911} (2Οƒ)(2\sigma), B=0.00189βˆ’0.00756+0.00583B=0.00189^{+0.00583}_{-0.00756} (1Οƒ1\sigma) βˆ’0.00915+0.00660^{+0.00660}_{-0.00915} (2Οƒ)(2\sigma), and H0=70.711βˆ’3.142+4.188H_{0}=70.711^{+4.188}_{-3.142} (1Οƒ1\sigma) βˆ’4.149+5.281^{+5.281}_{-4.149} (2Οƒ)(2\sigma).Comment: 12 pages, 1figur

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