Gondolo Paolo, Visinelli Luca
Department of Physics and Astronomy, University of Utah, 115 S 1400 E Rm. 201, Salt Lake City, Utah 84112, USA.
Phys Rev Lett. 2014 Jul 4;113(1):011802. doi: 10.1103/PhysRevLett.113.011802. Epub 2014 Jul 2.
The properties of axions that constitute 100% of cold dark matter (CDM) depend on the tensor-to-scalar ratio r at the end of inflation. If r=0.20(-0.05)(+0.07) as reported by the BICEP2 Collaboration, then "half" of the CDM axion parameter space is ruled out. Namely, in the context of single-field slow-roll inflation, for axions to be 100% of the CDM, the Peccei-Quinn symmetry must be broken after the end of inflation, so that axion nonadiabatic primordial fluctuations are compatible with observational constraints. The cosmic axion density is then independent of the tensor-to-scalar ratio r, and the axion mass is expected to be in a narrow range that, however, depends on the cosmological model before primordial nucleosynthesis. In the standard Lambda CDM cosmology, the CDM axion mass range is ma=(71±2 μeV)(αdec+1)6/7, where αdec is the fractional contribution to the cosmic axion density from decays of axionic strings and walls.
构成100%冷暗物质(CDM)的轴子性质取决于暴胀结束时的张量与标量比r。如果如BICEP2合作组所报告的r = 0.20(-0.05)(+0.07),那么CDM轴子参数空间的“一半”将被排除。也就是说,在单场慢滚暴胀的背景下,要使轴子构成100%的CDM,佩切伊 - 奎因对称性必须在暴胀结束后被打破,这样轴子的非绝热原初涨落才能与观测限制相兼容。此时宇宙轴子密度与张量与标量比r无关,并且轴子质量预计处于一个狭窄范围内,不过该范围取决于原初核合成之前的宇宙学模型。在标准的ΛCDM宇宙学中,CDM轴子质量范围是ma = (71 ± 2 μeV)(αdec + 1)^(6/7),其中αdec是轴子弦和壁的衰变对宇宙轴子密度的分数贡献。