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Measuring mass moments and electromagnetic moments of a massive, axisymmetric body, through gravitational waves

机译:通过重力波测量大型轴对称物体的质量矩和电磁矩

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摘要

The electrovacuum around a rotating massive body with electric charge density is described by its multipole moments (mass moments, mass-current moments, electric moments, and magnetic moments). A small uncharged test particle orbiting around such a body moves on geodesics if gravitational radiation is ignored. The waves emitted by the small body carry information about the geometry of the central object, and hence, in principle, we can infer all its multipole moments. Due to its axisymmetry the source is characterized now by four families of scalar multipole moments: its mass moments $M_l$, its mass-current moments $S_l$, its electrical moments $E_l$ and its magnetic moments $H_l$, where $l=0,1,2,...$. Four measurable quantities, the energy emitted by gravitational waves per logarithmic interval of frequency, the precession of the periastron (assuming almost circular orbits), the precession of the orbital plane (assuming almost equatorial orbits), and the number of cycles emitted per logarithmic interval of frequency, are presented as power series of the newtonian orbital velocity of the test body. The power series coefficients are simple polynomials of the various moments.
机译:旋转的具有电荷密度的块状物体周围的电真空通过其多极矩(质量矩,质流矩,电矩和磁矩)来描述。如果忽略了重力辐射,绕着这种物体运行的一个小的不带电的测试粒子将在测地线上移动。小物体发出的波携带有关中心物体几何形状的信息,因此,原则上我们可以推断出其所有多极矩。由于其轴对称性,该源现在具有四个标量多极矩族:它的质量矩$ M_l $,其质量流矩$ S_l $,其电气矩$ E_l $和其磁矩$ H_l $,其中$ l = 0,1,2,... $。四个可测量的量,每个对数频率间隔的引力波发射的能量,周星体的进动(假设几乎是圆形的轨道),轨道平面的进动(假设几乎是赤道的轨道),以及每个对数间隔所发射的循环数频率,表示为测试体的牛顿轨道速度的幂级数。幂级数系数是各个矩的简单多项式。

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