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Dynamical determination of the quadrupole mass moment of a white dwarf

机译:白矮星四极质量矩的动力学测定

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In this paper we dynamically determine the quadrupole mass moment Q of the magnetic white dwarf WD 0137-349 by looking for deviations from the third Kepler law induced by Q in the orbital period of the recently discovered brown dwarf moving around it in a close 2-hr orbit. It turns out that a purely Newtonian model for the orbit of WD 0137-349B, assumed circular and equatorial, is adequate, given the present-day accuracy in knowing the orbital parameters of such a binary system. Our result is Q=(-1.5±0.9)×10~(47) kg m~2 for i=35 deg. It is able to accommodate the 3-sigma significant discrepancy of (1.0±0.3)×10~(-8) s~(-2) between the inverse square of the phenomenologically determined orbital period and the inverse square of the calculated Keplerian one. The impact of i, for which an interval Δ i of possible values close to 35 deg is considered, is investigated as well.
机译:在本文中,我们通过寻找与Q感应的第三开普勒定律的偏差来动态确定磁性白矮星WD 0137-349的四极质量矩Q。 hr轨道。事实证明,考虑到当今知道此类二进制系统的轨道参数的精确度,假设圆形和赤道的WD 0137-349B轨道的纯牛顿模型就足够了。对于i = 35度,我们的结果是Q =(-1.5±0.9)×10〜(47)kg m〜2。它能够适应现象学确定的轨道周期的平方反比与计算的开普勒方程的平方反比之间的(1.0±0.3)×10〜(-8)s〜(-2)的3-sigma显着差异。还研究了i的影响,为此考虑了可能的值Δi接近35度的间隔。

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