A Monte Carlo approach to the 4D scattering equations

被引:0
|
作者
Joseph A. Farrow
机构
[1] Durham University,Department of Mathematical Sciences
关键词
Scattering Amplitudes; Supergravity Models; Supersymmetric Gauge Theory;
D O I
暂无
中图分类号
学科分类号
摘要
The scattering equation formalism is a general framework for calculation of amplitudes in theories of massless particles. We provide a detailed introduction to the 4D scattering equation framework accessible to non-experts, outline current difficulties solving the equations numerically, and explain how to overcome them with a Monte Carlo algorithm. With this submission we include treeamps4dJAF, the first publicly available Mathematica package for calculating amplitudes by solving the scattering equations, supporting MHV analytical and Nk − 2MHV numerical computations. The package provides a powerful and flexible computational tool for calculating tree-level amplitudes in super Yang Mills theories, Einstein supergravity and conformal supergravity. We tabulate sets of numerical solutions up to 9 points in all MHV sectors and 12 points in the NHMV sector which can be used for fast evaluation of amplitudes.
引用
收藏
相关论文
共 50 条
  • [31] Monte Carlo dose calculation procedure using a 4D motion simulating chest model
    Zhang, J.
    Xu, X. George
    Shi, C.
    Fuss, M.
    MEDICAL PHYSICS, 2006, 33 (06) : 2294 - 2294
  • [32] Performance optimization in 4D radiation treatment planning using Monte Carlo simulation on the cloud
    Chow, James C. L.
    JOURNAL OF COMPUTATIONAL METHODS IN SCIENCES AND ENGINEERING, 2016, 16 (01) : 147 - 156
  • [33] A Monte Carlo exploration of threefold base geometries for 4d F-theory vacua
    Washington Taylor
    Yi-Nan Wang
    Journal of High Energy Physics, 2016
  • [34] 4D Monte Carlo dose calculations in deforming anatomy using direct voxel tracking
    Heath, E
    Collins, L
    Seuntjens, J
    RADIOTHERAPY AND ONCOLOGY, 2005, 76 : S45 - S45
  • [35] Use of a realistic breathing lung phantom to verify 4D Monte Carlo dose calculations
    Gholampourkashi, S.
    Cygler, J.
    Lavigne, B.
    Heath, E.
    RADIOTHERAPY AND ONCOLOGY, 2019, 133 : S45 - S46
  • [36] Validation of a 4D Monte Carlo treatment planning tool using an image interpolation model
    Ding, M.
    Xing, L.
    Xiong, W.
    Stuhr, K.
    Newman, F.
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2006, 66 (03): : S655 - S656
  • [37] Validation of 4D Monte Carlo dose calculations using a programmable deformable lung phantom
    Gholampourkashi, Sara
    Cygler, Joanna E.
    Lavigne, Bernie
    Heath, Emily
    PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 2020, 76 : 16 - 27
  • [38] Monte Carlo applications in conformal, IMRT and 4D clinical treatment planning: Pitfalls and triumphs
    Chetty, I
    Siebers, J
    MEDICAL PHYSICS, 2005, 32 (06) : 2152 - 2153
  • [39] Development of a deformable phantom for experimental verification of 4D Monte Carlo simulations in a deforming anatomy
    Gholampourkashi, Sara
    Cygler, Joanna E.
    Lavigne, Bernie
    Heath, Emily
    PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 2018, 51 : 81 - 90
  • [40] A Monte Carlo exploration of threefold base geometries for 4d F-theory vacua
    Taylor, Washington
    Wang, Yi-Nan
    JOURNAL OF HIGH ENERGY PHYSICS, 2016, (01): : 1 - 38