Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

The Four-Loop Planar Amplitude and Cusp Anomalous Dimension in Maximally Supersymmetric Yang-Mills Theory

Journal Article · · Physical Review D
OSTI ID:895266

We present an expression for the leading-color (planar) four-loop four-point amplitude of N = 4 supersymmetric Yang-Mills theory in 4-2{epsilon} dimensions, in terms of eight separate integrals. The expression is based on consistency of unitarity cuts and infrared divergences. We expand the integrals around {epsilon} = 0, and obtain analytic expressions for the poles from 1/{epsilon}{sup 8} through 1/{epsilon}{sup 4}. We give numerical results for the coefficients of the 1/{epsilon}{sup 3} and 1/e{sup 2} poles. These results all match the known exponentiated structure of the infrared divergences, at four separate kinematic points. The value of the 1/{epsilon}{sup 2} coefficient allows us to test a conjecture of Eden and Staudacher for the four-loop cusp (soft) anomalous dimension. We find that the conjecture is incorrect, although our numerical results suggest that a simple modification of the expression, flipping the sign of the term containing {zeta}{sub 3}{sup 2}, may yield the correct answer. Our numerical value can be used, in a scheme proposed by Kotikov, Lipatov and Velizhanin, to estimate the two constants in the strong-coupling expansion of the cusp anomalous dimension that are known from string theory. The estimate works to 2.6% and 5% accuracy, providing non-trivial evidence in support of the AdS/CFT correspondence. We also use the known constants in the strong-coupling expansion as additional input to provide approximations to the cusp anomalous dimension which should be accurate to under one percent for all values of the coupling. When the evaluations of the integrals are completed through the finite terms, it will be possible to test the iterative, exponentiated structure of the finite terms in the four-loop four-point amplitude, which was uncovered earlier at two and three loops.

Research Organization:
Stanford Linear Accelerator Center (SLAC)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC02-76SF00515
OSTI ID:
895266
Report Number(s):
SLAC-PUB-12172; hep-th/0610248
Journal Information:
Physical Review D, Journal Name: Physical Review D
Country of Publication:
United States
Language:
English

Similar Records

Four-loop planar amplitude and cusp anomalous dimension in maximally supersymmetric Yang-Mills theory
Journal Article · Sun Apr 15 00:00:00 EDT 2007 · Physical Review. D, Particles Fields · OSTI ID:21020422

Iteration of Planar Amplitudes inMaximally Supersymmetric Yang-Mills Theoryat Three Loops
Journal Article · Fri May 27 00:00:00 EDT 2005 · Phys.Rev.D72:085001,2005 · OSTI ID:890800

Iteration of planar amplitudes in maximally supersymmetric Yang-Mills theory at three loops and beyond
Journal Article · Sat Oct 15 00:00:00 EDT 2005 · Physical Review. D, Particles Fields · OSTI ID:20713755