论文标题
重力法拉第效应来自壳振幅
Gravitational Faraday effect from on-shell amplitudes
论文作者
论文摘要
研究了大规模物体对大型无质量$ 2 \ 2 $经典散射的影响。焦点设置为较少考虑的无量纲扩展参数$λ/b $,其中$λ$是无数粒子的波长,而$ b $是影响参数。 $λ/b $的校正从$ \ Mathcal {o}(g^2)$开始出现,并带有与引力法拉第效应相关的领先校正术语,这是透明效应的特殊情况。我们计算二元相位最多为$ \ MATHCAL {O}(g^2)$,并提取自旋效应的散射角度和时间延迟至旋转中的第14阶。旋转中线性的引力法拉第效应由$λ/b $校正项再现,我们将其计算为较高的自旋阶。我们发现,等效原理或普遍性对于一般旋转物体(即远离几何光学限制)的最高含量为NLO。此外,在黑洞限制中,我们确认没有观察到的特定自旋结构以及相关的移位对称性,并认为它在$ \ Mathcal {o}(g^2)$中以任意自旋顺序在无质量探针限制中。
Effects of massive object's spin on massive-massless $2 \to 2$ classical scattering is studied. Focus is set on the less-considered dimensionless expansion parameter $λ/b$, where $λ$ is the massless particle's wavelength and $b$ is the impact parameter. Corrections in $λ/b$ start to appear from $\mathcal{O}(G^2)$, with leading correction terms tied to the gravitational Faraday effect, which is a special case of the Lense-Thirring effect. We compute the eikonal phase up to $\mathcal{O}(G^2)$ and extract spin effect on the scattering angle and time delay up to 14th order in spin. The gravitational Faraday effect at linear order in spin is reproduced by $λ/b$ correction terms, which we compute to higher orders in spin. We find that the equivalence principle, or universality, holds up to NLO for general spinning bodies, i.e. away from geometric optics limit. Furthermore, in the black hole limit, we confirm the absence of particular spin structure observed, along with the associated shift symmetry, and argue that it holds to arbitrary spin order at $\mathcal{O}(G^2)$ in the massless probe limit.