Automated implementation of on-shell methods for one-loop amplitudes

We present the first results from BlackHat, an automated C++ program for calculating one-loop amplitudes. The program implements the unitarity method and on-shell recursion to construct amplitudes. As input to the calculation, it uses compact analytic formulae for tree amplitudes for four-dimensiona...

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Veröffentlicht in:Physical review. D, Particles and fields Particles and fields, 2008-08, Vol.78 (3), Article 036003
Hauptverfasser: Berger, C. F., Bern, Z., Dixon, L. J., Cordero, F. Febres, Forde, D., Ita, H., Kosower, D. A., Maître, D.
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Sprache:eng
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Zusammenfassung:We present the first results from BlackHat, an automated C++ program for calculating one-loop amplitudes. The program implements the unitarity method and on-shell recursion to construct amplitudes. As input to the calculation, it uses compact analytic formulae for tree amplitudes for four-dimensional helicity states. The program performs all related computations numerically. We make use of recently developed on-shell methods for evaluating coefficients of loop integrals, introducing a discrete Fourier projection as a means of improving efficiency and numerical stability. We illustrate the numerical stability of our approach by computing and analyzing six-, seven-, and eight-gluon amplitudes in QCD and comparing against previously obtained analytic results.
ISSN:1550-7998
0556-2821
1550-2368
1089-4918
DOI:10.1103/PhysRevD.78.036003