TY - JOUR
T1 - Some tree-level string amplitudes in the NSR formalism
AU - Becker, Katrin
AU - Becker, Melanie
AU - Melnikov, Ilarion V.
AU - Robbins, Daniel
AU - Royston, Andrew B.
N1 - Publisher Copyright:
© 2015, The Author(s).
PY - 2015/12/1
Y1 - 2015/12/1
N2 - Abstract: We calculate tree level scattering amplitudes for open strings using the NSR formalism. We present a streamlined symmetry-based and pedagogical approach to the computations, which we first develop by checking two-, three-, and four-point functions involving bosons and fermions. We calculate the five-point amplitude for massless gluons and find agreement with an earlier result by Brandt, Machado and Medina. We then compute the five-point amplitudes involving two and four fermions respectively, the general form of which has not been previously obtained in the NSR formalism. The results nicely confirm expectations from the supersymmetric F4 effective action. Finally we use the prescription of Kawai, Lewellen and Tye (KLT) to compute the amplitudes for the closed string sector.
AB - Abstract: We calculate tree level scattering amplitudes for open strings using the NSR formalism. We present a streamlined symmetry-based and pedagogical approach to the computations, which we first develop by checking two-, three-, and four-point functions involving bosons and fermions. We calculate the five-point amplitude for massless gluons and find agreement with an earlier result by Brandt, Machado and Medina. We then compute the five-point amplitudes involving two and four fermions respectively, the general form of which has not been previously obtained in the NSR formalism. The results nicely confirm expectations from the supersymmetric F4 effective action. Finally we use the prescription of Kawai, Lewellen and Tye (KLT) to compute the amplitudes for the closed string sector.
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U2 - 10.1007/JHEP12(2015)010
DO - 10.1007/JHEP12(2015)010
M3 - Article
AN - SCOPUS:84949232706
SN - 1126-6708
VL - 2015
SP - 1
EP - 48
JO - Journal of High Energy Physics
JF - Journal of High Energy Physics
IS - 12
M1 - 10
ER -