首页> 外文期刊>The Astrophysical journal >COSMOLOGICAL EVOLUTION AND LUMINOSITY FUNCTION EFFECTS ON NUMBER COUNTS, REDSHIFT, AND TIME DILATION OF BURSTING SOURCES
【24h】

COSMOLOGICAL EVOLUTION AND LUMINOSITY FUNCTION EFFECTS ON NUMBER COUNTS, REDSHIFT, AND TIME DILATION OF BURSTING SOURCES

机译:宇宙演化和发光度函数对爆炸源数量,重新偏移和时间稀释的影响

获取原文
获取原文并翻译 | 示例
           

摘要

We present analytic formulae for the integral number count distribution of cosmological bursting or steady sources valid over the entire range of fluxes, including density evolution and either standard candle or a power-law luminosity function. These are used to derive analytic formulae for the mean redshift, the time dilations, and the dispersion of these quantities for sources within a given flux range for Friedmann models with Ω = 1, Λ = 0 without K-corrections. We discuss the extension to cases with Ω < 1 and inclusion of K-corrections. Applications to the spatial distribution of cosmological gamma-ray burst sources are discussed, both with and without an intrinsic energy stretching of the burst time profiles, and the implied ranges of redshift z are considered for a specific time dilation signal value. The simultaneous consideration of time dilation information and of fits of the number distribution versus peak flux breaks the degeneracy inherent in the latter alone, allowing a unique determination of the density evolution index and the characteristic luminosity of the sources. For a reported time dilation signal of 2.25 and neglecting (including) energy stretching, we find that the proper density should evolve more steeply with redshift than comoving constant, and the redshifts of the dimmest sources with stretching would be very large. However, the expected statistical dispersion in the redshifts is large, especially for power-law luminosity functions, and remains compatible with that of distant quasars. For smaller time dilation values of 1.75 and 1.35, the redshifts are more compatible with conventional ideas about galaxy formation, and the evolution is closer to a comoving constant or a slower evolution. More generally, we have considered a wide range of possible measured time dilation ratios, and we discuss the values of the density evolution and the redshifts that would be expected for different values of the energy stretching.
机译:我们提供了在整个通量范围内有效的宇宙爆发或稳定源的整数计数分布的解析公式,包括密度演化和标准烛光或幂律光度函数。对于Ω= 1,Λ= 0,没有K校正,在给定通量范围内,对于源在给定通量范围内的源,这些平均数用于得出平均红移,时间膨胀和这些量的离散度的解析公式。我们讨论了扩展到Ω<1并包含K校正的情况。讨论了宇宙伽马射线爆发源在空间分​​布中的应用,无论是否有爆发时间分布的内在能量扩展,并且针对特定的时间膨胀信号值考虑了红移z的隐含范围。同时考虑时间膨胀信息和数量分布与峰值通量的拟合,可以打破后者本身固有的简并性,从而可以唯一确定密度演化指数和光源的特征光度。对于报告的时间扩张信号为2.25且忽略(包括)能量拉伸,我们发现适当的密度随着红移比共同移动常数更陡峭地演化,并且最暗的光源随着拉伸的红移将非常大。但是,在红移中预期的统计色散很大,尤其是对于幂律光度函数,并且与远距离类星体的色散保持兼容。对于较小的1.75和1.35的时间膨胀值,红移与关于星系形成的传统观念更兼容,并且其演化更接近于共同移动的常数或较慢的演化。更一般而言,我们考虑了各种可能的测得的时间膨胀比,并讨论了密度演化的值和针对不同能量拉伸值所预期的红移。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号