arXiv · 1410.0809
Do the constants of nature couple to strong gravitational fields?
Abstract
Recently, white dwarf stars have found a new use in the fundamental physics community. Many prospective theories of the fundamental interactions of Nature allow traditional constants, like the fine structure constant $α$, to vary in some way. A study by Berengut et al. (2013) used the Fe/Ni V line measurements made by Preval et al. (2013) from the hot DA white dwarf G191-B2B, in an attempt to detect any variation in $α$. It was found that the Fe V lines indicated an increasing alpha, whereas the Ni V lines indicated a decreasing alpha. Possible explanations for this could be misidentification of the lines, inaccurate atomic data, or wavelength dependent distortion in the spectrum. We examine the first two cases by using a high S/N reference spectrum from the hot sdO BD+28$^{\circ}$4211 to calibrate the Fe/Ni V atomic data. With this new data, we re-evaluate the work of Berengut et al. (2013) to derive a new constraint on the variation of alpha in a gravitational field.
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S. P. Preval, M. A. Barstow, J. B. Holberg, J. D. Barrow, J. C. Berengut, J. K. Webb, D. Dougan, J. Hu. 2014-10-13. Do the constants of nature couple to strong gravitational fields?. https://arxiv.org/abs/1410.0809
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