论文标题
迈向中微子电磁学的干扰法
Towards interferometry of neutrino electromagnetism
论文作者
论文摘要
在基本颗粒的标准模型中预测了不对称的中微子环境会导致电磁波线性极化的旋转 - 双向反应。我们证明,如果光子通过折射培养基传播,则这种作用会大大增强,从而有效地增加了光子暴露于中微子培养基。我们对红外激光束的估计为$ 1 \,\ Mathrm {M} $长的光纤暴露于反应堆抗中性通量导致线性极化旋转通过角度$ \ sim4.6 \ times10^{ - 39} { - 39} \,\,\ Mathrm {rad} $。我们还得出了对实验室框架中光子方向和中微子繁殖方向之间效果的适当依赖性。为此,我们得出了极化四个向量基础的正确形式,这与文献中广泛使用的基础不同。我们还根据折射率的变化及其角度依赖性,估计了由于中微子偶极子磁矩而引起的中微子介质的子领先光学效应。粗糙的单色近似指向效应的共振增强。
It is predicted within the Standard Model of elementary particles that asymmetric neutrino environments cause rotation of linear polarization of electromagnetic wave -- the birefringence. We demonstrate that this effect is strongly enhanced if additionally the photon is propagating through refractive medium, which effectively increases the photon exposure to the neutrino medium. Our estimate for infrared laser beam in $1\,\mathrm{m}$ long optical fiber exposed to reactor anti-neutrino flux results in linear polarization rotation by the angle $\sim4.6\times10^{-39}\,\mathrm{rad}$. We also derive the proper dependence of the effect on the angle between the directions of photon and neutrino propagation in the laboratory frame. For that purpose we derive the correct form of the basis of polarization four-vectors, which differs from the one widely used in literature. We also estimate the sub-leading optical effect of the neutrino medium due to the neutrino dipole magnetic moment, in terms of a variation of the refractive index and its angular dependence. A rough monochromatic approximation points towards the existence of a resonant enhancement of the effect.