Standard model effective field theory up to mass dimension 12
暂无分享,去创建一个
[1] R. Harlander,et al. AutoEFT: Automated Operator Construction for Effective Field Theories , 2023, 2309.15783.
[2] A. E. Thomsen,et al. A proof of concept for matchete: an automated tool for matching effective theories , 2022, The European Physical Journal C.
[3] Z. Ren,et al. A Complete Set of the Dimension-8 Green's Basis Operators in the Standard Model Effective Field Theory , 2022, 2211.01420.
[4] Z. Ren,et al. Operators for generic effective field theory at any dimension: on-shell amplitude basis construction , 2022, Journal of High Energy Physics.
[5] J. Santiago,et al. Matchmakereft: automated tree-level and one-loop matching , 2021, SciPost Physics.
[6] Z. Ren,et al. Operator bases in effective field theories with sterile neutrinos: d ≤ 9 , 2021, Journal of High Energy Physics.
[7] M. Neubert,et al. ALP — SMEFT interference , 2021, Journal of High Energy Physics.
[8] Renato M. Fonseca,et al. GroupMath: A Mathematica package for group theory calculations , 2020, Comput. Phys. Commun..
[9] Y. Liao,et al. An explicit construction of the dimension-9 operator basis in the standard model effective field theory , 2020, Journal of High Energy Physics.
[10] Z. Ren,et al. Complete set of dimension-eight operators in the standard model effective field theory , 2020, Physical Review D.
[11] Z. Ren,et al. Complete set of dimension-nine operators in the standard model effective field theory , 2020, Physical Review D.
[12] C. Murphy. Dimension-8 operators in the Standard Model Effective Field Theory , 2020, Journal of High Energy Physics.
[13] W. Waalewijn,et al. ..., 83106786, 114382724, 1509048322, 2343463290, 27410087742, ... efficient Hilbert series for effective theories , 2020, 2004.09521.
[14] C. S. Machado,et al. Enumerating higher-dimensional operators with on-shell amplitudes , 2019, Physical Review D.
[15] A. Kobach,et al. Baryon number, lepton number, and operator dimension in the SMEFT with flavor symmetries , 2019, Physics Letters B.
[16] J. Serra,et al. Effective field theory of gravity to all orders , 2019, 1908.08050.
[17] A. Voigt,et al. Completing the scalar and fermionic universal one-loop effective action , 2019, Journal of High Energy Physics.
[18] R. Fonseca. Enumerating the operators of an effective field theory , 2019, Physical Review D.
[19] M. Pérez-Victoria,et al. Field redefinitions in effective theories at higher orders , 2018, Journal of High Energy Physics.
[20] A. Voigt,et al. Extending the universal one-loop effective action by regularization scheme translating operators , 2018, Journal of High Energy Physics.
[21] A. E. Thomsen,et al. Flavor Physics and Flavor Anomalies in Minimal Fundamental Partial Compositeness , 2017, 1712.07646.
[22] R. Fonseca. The Sym2Int program: going from symmetries to interactions , 2017, 1703.05221.
[23] Y. Liao,et al. Renormalization group evolution of dimension-seven baryon- and lepton-number-violating operators , 2016, Journal of High Energy Physics.
[24] A. Kobach. Baryon Number, Lepton Number, and Operator Dimension in the Standard Model , 2016, 1604.05726.
[25] Hitoshi Murayama,et al. 2, 84, 30, 993, 560, 15456, 11962, 261485, . . .: higher dimension operators in the SM EFT , 2015, Journal of High Energy Physics.
[26] John Ellis,et al. The universal one-loop effective action , 2015, 1512.03003.
[27] Kentarou Mawatari,et al. Rosetta: an operator basis translator for standard model effective field theory , 2015, The European Physical Journal C.
[28] Landon Lehman,et al. Extending the Standard Model Effective Field Theory with the Complete Set of Dimension-7 Operators , 2014, 1410.4193.
[29] Takahiro Ueda,et al. FORM version 4.0 , 2012, Comput. Phys. Commun..
[30] Renato M. Fonseca,et al. Calculating the renormalisation group equations of a SUSY model with Susyno , 2011, Comput. Phys. Commun..
[31] M. Misiak,et al. Dimension-six terms in the Standard Model Lagrangian , 2010, 1008.4884.
[32] E. Jenkins,et al. Algebraic structure of lepton and quark flavor invariants and CP violation , 2009, 0907.4763.
[33] C. Arzt. Reduced effective lagrangians , 1993, hep-ph/9304230.
[34] D. Wyler,et al. Effective lagrangian analysis of new interactions and flavour conservation , 1986 .
[35] C. Marinissen. Efficient Hilbert Series for Effective Theories , 2020 .
[36] W. Marsden. I and J , 2012 .
[37] A.,et al. For Better or Worse: Introducing the GNU General Public License Version 3 , 2008 .