TENSOR PERTURBATIONS IN INFLATIONARY MODELS AS A PROBE OF COSMOLOGY

被引:185
作者
TURNER, MS
WHITE, M
LIDSEY, JE
机构
[1] UNIV CHICAGO,ENRICO FERMI INST,DEPT ASTRON & ASTROPHYS,CHICAGO,IL 60637
[2] FERMILAB NATL ACCELERATOR LAB,NASA,FERMILAB ASTROPHYS CTR,BATAVIA,IL 60510
[3] UNIV CALIF BERKELEY,CTR PARTICLE ASTROPHYS,BERKELEY,CA 94720
来源
PHYSICAL REVIEW D | 1993年 / 48卷 / 10期
关键词
D O I
10.1103/PhysRevD.48.4613
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In principle, the tensor metric (gravity-wave) perturbations that arise in inflationary models can, beyond probing the underlying inflationary model, provide information about the Universe: ionization history, presence of a cosmological constant, and epoch of matter-radiation equality. Because tensor perturbations give rise to the anisotropy of the cosmic background radiation (CBR) solely through the Sachs-Wolfe effect we are able to calculate analytically their contribution to the variance of the multipole moments of the CBR temperature anisotropy. In so doing, we carefully take account of the effect of tensor perturbations that entered the Hubble radius during both the matter-dominated and radiation-dominated epochs by means of a transfer function. (Previously, only those modes that entered during the matter era were properly taken into account.) The striking feature in the spectrum of multipole amplitudes is a dramatic falloff for 1 greater than or similar to square-root 1 + z(LSS), where z(LSS) is the redshift of the last-scattering surface, which depends upon the ionization history of the Universe. Finally, using our transfer function we provide a more precise formula for the energy density in stochastic gravitational waves from inflation, and, using the Cosmic Background Explorer Differential Microwave Radiometer (COBE DMR) quadrupole normalization, we express this energy density in terms of the ''tilt'' of the spectrum of tensor perturbations alone and show that it is unlikely that the stochastic background of gravity waves can be detected directly in the foreseeable future.
引用
收藏
页码:4613 / 4622
页数:10
相关论文
共 43 条
[1]   CONSTRAINTS ON GENERALIZED INFLATIONARY COSMOLOGIES [J].
ABBOTT, LF ;
WISE, MB .
NUCLEAR PHYSICS B, 1984, 244 (02) :541-548
[2]   LIGO - THE LASER-INTERFEROMETER-GRAVITATIONAL-WAVE-OBSERVATORY [J].
ABRAMOVICI, A ;
ALTHOUSE, WE ;
DREVER, RWP ;
GURSEL, Y ;
KAWAMURA, S ;
RAAB, FJ ;
SHOEMAKER, D ;
SIEVERS, L ;
SPERO, RE ;
THORNE, KS ;
VOGT, RE ;
WEISS, R ;
WHITCOMB, SE ;
ZUCKER, ME .
SCIENCE, 1992, 256 (5055) :325-333
[3]   STOCHASTIC GRAVITY-WAVE BACKGROUND IN INFLATIONARY-UNIVERSE MODELS [J].
ALLEN, B .
PHYSICAL REVIEW D, 1988, 37 (08) :2078-2085
[4]   THE STATISTICS OF PEAKS OF GAUSSIAN RANDOM-FIELDS [J].
BARDEEN, JM ;
BOND, JR ;
KAISER, N ;
SZALAY, AS .
ASTROPHYSICAL JOURNAL, 1986, 304 (01) :15-61
[5]   SPONTANEOUS CREATION OF ALMOST SCALE-FREE DENSITY PERTURBATIONS IN AN INFLATIONARY UNIVERSE [J].
BARDEEN, JM ;
STEINHARDT, PJ ;
TURNER, MS .
PHYSICAL REVIEW D, 1983, 28 (04) :679-693
[6]   THE STATISTICS OF COSMIC BACKGROUND-RADIATION FLUCTUATIONS [J].
BOND, JR ;
EFSTATHIOU, G .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 1987, 226 (03) :655-&
[7]   COSMIC-STRUCTURE CONSTRAINTS FROM A ONE-DEGREE MICROWAVE-BACKGROUND ANISOTROPY EXPERIMENT [J].
BOND, JR ;
EFSTATHIOU, G ;
LUBIN, PM ;
MEINHOLD, PR .
PHYSICAL REVIEW LETTERS, 1991, 66 (17) :2179-2182
[8]   RECONSTRUCTING THE INFLATION POTENTIAL - IN PRINCIPLE AND IN PRACTICE [J].
COPELAND, EJ ;
KOLB, EW ;
LIDDLE, AR ;
LIDSEY, JE .
PHYSICAL REVIEW D, 1993, 48 (06) :2529-2547
[9]  
CRITTENDEN R, IN PRESS ASTROPHYS J
[10]   COSMIC MICROWAVE BACKGROUND PROBES MODELS OF INFLATION [J].
DAVIS, RL ;
HODGES, HM ;
SMOOT, GF ;
STEINHARDT, PJ ;
TURNER, MS .
PHYSICAL REVIEW LETTERS, 1992, 69 (13) :1856-1859