SPheno 3.1: extensions including flavour, CP-phases and models beyond the MSSM

Published: 1 Nov 2012 | Version 1 | DOI: 10.17632/6vd25fwc73.1
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Description of this data

Abstract
We describe recent extensions of the program SPhenoincluding flavour aspects, CP-phases, R -parity violation and low energy observables. In case of flavour mixing all masses of supersymmetric particles are calculated including the complete flavour structure and all possible CP-phases at the 1-loop level. We give details on implemented seesaw models, low energy observables and the corresponding extension of the SUSY Les Houches Accord. Moreover, we comment on the possibilities to include MSS...

Title of program: SPheno
Catalogue Id: ADRV_v2_0

Nature of problem
The first issue is the determination of the masses and couplings of supersymmetric particles in various supersymmetric models the R-parity conserved MSSM with generation mixing and including CP-violating phases, various seesaw extensions of the MSSM and the MSSM with bilinear R-parity breaking. Low energy data on Standard Model fermion masses, gauge couplings and electroweak gauge boson masses serve as constraints. Radiative corrections from supersymmetric particles to these inputs must be calcu ...

Versions of this program held in the CPC repository in Mendeley Data
ADRV_v1_0; SPheno; 10.1016/S0010-4655(03)00222-4
ADRV_v2_0; SPheno; 10.1016/j.cpc.2012.05.021

This program has been imported from the CPC Program Library held at Queen's University Belfast (1969-2019)

Experiment data files

This data is associated with the following publication:

SPheno 3.1: extensions including flavour, CP-phases and models beyond the MSSM

Published in: Computer Physics Communications

Latest version

  • Version 1

    2012-11-01

    Published: 2012-11-01

    DOI: 10.17632/6vd25fwc73.1

    Cite this dataset

    Porod, W.; Staub, F. (2012), “ SPheno 3.1: extensions including flavour, CP-phases and models beyond the MSSM ”, Mendeley Data, v1 http://dx.doi.org/10.17632/6vd25fwc73.1

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Computational Physics

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