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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Cosmic parity violation due to a flavor-space locked gauge field
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Cosmic parity violation due to a flavor-space locked gauge field

机译:由于风味空间锁定的量规字段而违反宇宙奇偶校验

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A flavor-space locked gauge field is shown to behave like a birefringent medium, imparting a preferred left- or right-circular polarization onto gravitational waves. In a cosmological scenario, such a gauge field can cause a primordial spectrum of gravitational waves to develop a net handedness. The degree of chiral asymmetry depends on the wavelength, the abundance of the gauge field, and the strength of the gauge coupling. An asymmetry in the gravitational wave spectrum would be imprinted on the photon polarization pattern of the cosmic microwave background at last scattering. In this scenario, cosmic parity violation is written on the sky, as we predict nonzero correlation of the curl polarization with the temperature, as well as curl with gradient polarization. We compare this phenomena with parity violation in models of chiral gravity, in which the chiral asymmetry is primordial, and with models of quintessence cosmic birefringence, in which parity-violating correlations are induced along the line of sight.
机译:示出了一种风味空间锁定的标距场,其行为类似于双折射介质,将优选的左旋或右旋圆偏振赋予了重力波。在宇宙学场景中,这样的规范场会导致引力波的原始频谱发展为净惯性。手性不对称度取决于波长,量规场的丰度以及量规耦合的强度。在最后一次散射时,重力波谱中的不对称性将被印在宇宙微波背景的光子偏振图案上。在这种情况下,由于我们预测了卷曲极化与温度以及梯度极化与卷曲之间的非零相关性,因此违反了宇宙奇偶校验。我们将这种现象与手性重力模型(其中手性不对称性是原始的)中的奇偶校验违规现象以及典型的宇宙双折射模型(其中沿视线诱发违反奇偶性相关性)进行了比较。

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