398 research outputs found

    Cosmological Gravitational Wave Backgrounds

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    An overview is presented of possible cosmologically distant sources of gravitational wave backgrounds, especially those which might produce detectable backgrounds in the LISA band between 0.1 and 100 mHz. Examples considered here include inflation-amplified vacuum fluctuations in inflaton and graviton fields, bubble collisions in first-order phase transitions, Goldstone modes of classical self-ordering scalars, and cosmic strings and other gauge defects. Characteristic scales and basic mechanisms are reviewed and spectra are estimated for each of these sources. The unique impact of a LISA detection on fundamental physics and cosmology is discussed.Comment: 8 pages, LaTex, to appear in the "Second International LISA Symposium on Gravitational Waves", ed. W. Folkner (AIP, in press

    Giant Branch Mixing and the Ultimate Fate of Primordial Deuterium in the Galaxy

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    The observed cosmic abundances of light elements are most consistent with each other, and with the predictions of big bang nucleosynthesis,if, contrary to the usual assumption, galactic chemical evolution reduces (D+ 3He)/H(D+\ ^3He)/H with time. Chemical evolution models which do this require that low mass stars destroy 3He^3He in the envelope gas that they return to the interstellar medium. A simple argument based on the rates of limiting nuclear reactions shows that the same giant branch mixing process which appears to be needed to explain the observed 12C/13C^{12}C/ ^{13}C and C/NC/N ratios in 1-- 2\msol stars would indeed also probably destroy 3He^3He by a large factor in the bulk of the envelope material. The conclusion is that Galactic 3He/H^3He/H estimates should not be trusted for setting an upper limit on primordial (D+3He)/H(D+ ^3He)/H. This removes the strongest lower bound on the cosmic baryon density from big bang nucleosynthesis and the only argument for abundant baryonic dark matter.Comment: 13 pages, AAS LaTe
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