Markus Frank
University of Stuttgart
37 Papers
152 Citations
Markus Frank is an academic researcher from University of Stuttgart. The author has contributed to research in topics: Computer science & Higgs boson. The author has an hindex of 12, co-authored 34 publications. Previous affiliations of Markus Frank include Karlsruhe Institute of Technology & University of Tübingen.
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Papers
The Higgs Boson Masses and Mixings of the Complex MSSM in the Feynman-Diagrammatic Approach
TL;DR: In this paper, the full dependence on all relevant complex phases is taken into account, and all the imaginary parts appearing in the calculation are treated in a consistent way, and the renormalization is discussed in detail, and a hybrid on-shell/ scheme is adopted.
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Increased steady state mRNA levels of the STM and KNAT1 homeobox genes in cytokinin overproducing Arabidopsis thaliana indicate a role for cytokinins in the shoot apical meristem.
TL;DR: The influence of cytokinin on homeobox genes provides a link between the hormone and the developmental genes and indicates a role for cytokinins in the shoot apical meristem.
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Visual analysis of two-dimensional magnetohydrodynamics
TL;DR: In this article, a quasi-two-dimensional magnetohydrodynamics (MHD) model was proposed to study the behavior of two-dimensional turbulent flows, where a strong external magnetic field B perpendicular to the flow direction of an electrically conducting fluid will suppress velocity gradients in the direction of B. The resulting approximation is known as quasi-2D MHD.
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Hormone autotrophic growth and differentiation identifies mutant lines of Arabidopsis with altered cytokinin and auxin content or signaling.
Markus Frank,Hans-Michael Rupp,Els Prinsen,Václav Motyka,Harry Van Onckelen,Thomas Schmülling +5 more
TL;DR: Screening for hormone-autonomous growth identifies mutants with altered hormone content or signaling in mutant tissue lines of Arabidopsis that are able to grow in vitro as callus on hormone-free medium.
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•Posted Content
FeynHiggs1.2: Hybrid MS-bar / on-shell renormalization for the CP even Higgs boson sector in the MSSM
TL;DR: In this article, an updated version of the Fortran code FeynHiggs for the evaluation of the neutral CP-even Higgs sector masses and mixing angles is presented, which differs from the previous version by a modification of the renormalization scheme concerning the treatment of subleading terms at the one-loop level.
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