scholarly journals Antenna showers with one-loop matrix elements

2013 ◽  
Vol 2013 (10) ◽  
Author(s):  
L. Hartgring ◽  
E. Laenen ◽  
P. Skands
Keyword(s):  
2008 ◽  
Vol 2008 (12) ◽  
pp. 070-070 ◽  
Author(s):  
Nils Lavesson ◽  
Leif Lönnblad
Keyword(s):  

2010 ◽  
Author(s):  
Fotos Stylianou ◽  
Martha Constantinou ◽  
Vittorio Lubicz ◽  
Haralambos Panagopoulos ◽  
Apostolos Skouroupathis
Keyword(s):  

2021 ◽  
Vol 2021 (12) ◽  
Author(s):  
Alex Edison ◽  
Max Guillen ◽  
Henrik Johansson ◽  
Oliver Schlotterer ◽  
Fei Teng

Abstract In the low-energy effective action of string theories, non-abelian gauge interactions and supergravity are augmented by infinite towers of higher-mass-dimension operators. We propose a new method to construct one-loop matrix elements with insertions of operators D2kFn and D2kRn in the tree-level effective action of type-I and type-II superstrings. Inspired by ambitwistor string theories, our method is based on forward limits of moduli-space integrals using string tree-level amplitudes with two extra points, expanded in powers of the inverse string tension α′. Similar to one-loop ambitwistor computations, intermediate steps feature non-standard linearized Feynman propagators which eventually recombine to conventional quadratic propagators. With linearized propagators the loop integrand of the matrix elements obey one-loop versions of the monodromy and KLT relations. We express a variety of four- and five-point examples in terms of quadratic propagators and formulate a criterion on the underlying genus-one correlation functions that should make this recombination possible at all orders in α′. The ultraviolet divergences of the one-loop matrix elements are crosschecked against the non-separating degeneration of genus-one integrals in string amplitudes. Conversely, our results can be used as a constructive method to determine degenerations of elliptic multiple zeta values and modular graph forms at arbitrary weight.


2021 ◽  
Vol 81 (12) ◽  
Author(s):  
John M. Campbell ◽  
Stefan Höche ◽  
Christian T. Preuss

AbstractThe evaluation of one-loop matrix elements is one of the main bottlenecks in precision calculations for the high-luminosity phase of the Large Hadron Collider. To alleviate this problem, a new C++ interface to the "Image missing" parton-level Monte Carlo is introduced, giving access to an extensive library of analytic results for one-loop amplitudes. Timing comparisons are presented for a large set of Standard Model processes. These are relevant for high-statistics event simulation in the context of experimental analyses and precision fixed-order computations.


1990 ◽  
Vol 55 (12) ◽  
pp. 2889-2897
Author(s):  
Jaroslav Holoubek

Recent theoretical work has shown that the complete set of polarized elastic light-scattering studies should yield information about scatterer structure that has so far hardly been utilized. We present here calculations of angular dependences of light-scattering matrix elements for spheres near the Rayleigh and Rayleigh-Gans-Debye limits. The significance of single matrix elements is documented on examples that show how different matrix elements respond to changes in particle parameters. It appears that in the small-particle limit (Rg/λ < 0.1) we do not loose much information by ignoring "large particle" observables.


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