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A universal splitting of string and particle scattering amplitudes

Published 13 Mar 2024 in hep-th | (2403.08855v2)

Abstract: We propose a new splitting behavior of tree-level string/particle amplitudes for scalars, gluons and gravitons. We identify certain subspaces in the space of Mandelstam variables, where the universal Koba-Nielsen factor splits into two parts (each with an off-shell leg). Both open- and closed-string amplitudes with Parke-Taylor factors naturally factorize into two stringy ${\it currents}$, which implies the splitting of bi-adjoint $\phi3$ amplitudes and via a simple deformation to unified stringy amplitudes, the splitting of amplitudes in the non-linear sigma model and Yang-Mills-scalar theory; the same splitting holds for scalar amplitudes without color such as the special Galileon. Remarkably, if we impose similar constraints on Lorentz products involving polarizations, gluon and graviton amplitudes in bosonic string and superstring theories also split into two (stringy) currents. A special case of the splitting implies soft theorems, and more generally it extends recently proposed smooth splittings and new factorizations near zeros to all these theories.

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References (8)
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  4. We work in general spacetime dimension e.g. with D>n𝐷𝑛D>nitalic_D > italic_n and ignore Gram determinant constraints.
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  6. The left/right currents contain |A|+3𝐴3|A|+3| italic_A | + 3 and |B|+3𝐵3|B|+3| italic_B | + 3 external legs respectively, and in total we have n+3𝑛3n+3italic_n + 3 legs; the dimensions of these moduli spaces add up: n−3=|A|+|B|=nL−3+nR−3𝑛3𝐴𝐵subscript𝑛𝐿3subscript𝑛𝑅3n{-}3=|A|+|B|=n_{L}{-}3+n_{R}{-}3italic_n - 3 = | italic_A | + | italic_B | = italic_n start_POSTSUBSCRIPT italic_L end_POSTSUBSCRIPT - 3 + italic_n start_POSTSUBSCRIPT italic_R end_POSTSUBSCRIPT - 3.
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