Constraints on a massive double-copy and applications to massive gravity

被引:0
作者
Laura A. Johnson
Callum R. T. Jones
Shruti Paranjape
机构
[1] Case Western Reserve University,CERCA, Department of Physics
[2] The University of Michigan,Leinweber Center for Theoretical Physics, Randall Laboratory of Physics
来源
Journal of High Energy Physics | / 2021卷
关键词
Scattering Amplitudes; Classical Theories of Gravity;
D O I
暂无
中图分类号
学科分类号
摘要
We propose and study a BCJ double-copy of massive particles, showing that it is equivalent to a KLT formula with a kernel given by the inverse of a matrix of massive bi-adjoint scalar amplitudes. For models with a uniform non-zero mass spectrum we demonstrate that the resulting double-copy factors on physical poles and that up to at least 5-particle scattering, color-kinematics duality satisfying numerators always exist. For the scattering of 5 or more particles, the procedure generically introduces spurious singularities that must be cancelled by imposing additional constraints. When massive particles are present, color-kinematics duality is not enough to guarantee a physical double-copy. As an example, we apply the formalism to massive Yang-Mills and show that up to 4-particle scattering the double-copy construction generates physical amplitudes of a model of dRGT massive gravity coupled to a dilaton and a two-form with dilaton parity violating couplings. We show that the spurious singularities in the 5-particle double-copy do not cancel in this example, and the construction fails to generate physically sensible amplitudes. We conjecture sufficient constraints on the mass spectrum, which in addition to massive BCJ relations, guarantee the absence of spurious singularities.
引用
收藏
相关论文
共 103 条
  • [1] Kawai H(1986) = 8 Nucl. Phys. B 269 1-undefined
  • [2] Lewellen DC(2015) = 4 JHEP 11 046-undefined
  • [3] Tye SHH(2016)4 JHEP 01 170-undefined
  • [4] Johansson H(2015) 5 JHEP 07 149-undefined
  • [5] Ochirov A(2010)undefined Phys. Rev. Lett. 105 056-undefined
  • [6] Johansson H(2014)undefined JHEP 12 152-undefined
  • [7] Ochirov A(2018)undefined Phys. Rev. D 98 029-undefined
  • [8] Cachazo F(2008)undefined Phys. Rev. D 78 040-undefined
  • [9] He S(2014)undefined JHEP 01 064-undefined
  • [10] Yuan EY(2014)undefined JHEP 09 171601-undefined