Constraint on the early Universe by relic gravitational waves: From pulsar timing observations
arXiv:1103.3927 · doi:10.1103/PhysRevD.83.104021
Abstract
Recent pulsar timing observations by the Parkers Pulsar Timing Array and European Pulsar Timing Array teams obtained the constraint on the relic gravitational waves at the frequency , which provides the opportunity to constrain , the Hubble parameter when these waves crossed the horizon during inflation. In this paper, we investigate this constraint by considering the general scenario for the early Universe: we assume that the effective (average) equation-of-state before the big bang nucleosynthesis stage is a free parameter. In the standard hot big-bang scenario with , we find that the current PPTA result follows a bound $H_*\leq 1.15\times10^{-1}\mpl$, and the EPTA result follows $H_*\leq 6.92\times10^{-2}\mpl$. We also find that these bounds become much tighter in the nonstandard scenarios with . When , the bounds become $H_*\leq5.89\times10^{-3}\mpl$ for the current PPTA and $H_*\leq3.39\times10^{-3}\mpl$ for the current EPTA. In contrast, in the nonstandard scenario with , the bound becomes $H_*\leq7.76\mpl$ for the current PPTA.
8 pages, 3 figures, 1 table, PRD in press
References in corpus (12)
- Three Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Polarization Analysis
- Upper bounds on the low-frequency stochastic gravitational wave background from pulsar timing observations: current limits and future prospects
- Improved Calculation of the Primordial Gravitational Wave Spectrum in the Standard Model
- A stochastic background of gravitational waves from hybrid preheating
- A new cosmic microwave background constraint to primordial gravitational waves
- Prospects for direct detection of primordial gravitational waves
- Relic gravitational waves and their detection
- Relic Gravitational Waves in the Accelerating Universe
- Relic Gravitational Waves with A Running Spectral Index and Its Constraints at High Frequencies
- Constraints upon the spectral indices of relic gravitational waves by LIGO S5
- Relic gravitational waves: latest revisions and preparations for new data
- Detecting relic gravitational waves in the CMB: Comparison of different methods
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