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Robert Harlander [7]Robert V. Harlander [1]
  1. Philosophical perspectives on ad hoc hypotheses and the Higgs mechanism.Simon Friederich, Robert V. Harlander & Koray Karaca - 2014 - Synthese 191 (16):3897-3917.
    We examine physicists’ charge of ad hocness against the Higgs mechanism in the standard model of elementary particle physics. We argue that even though this charge never rested on a clear-cut and well-entrenched definition of “ad hoc”, it is based on conceptual and methodological assumptions and principles that are well-founded elements of the scientific practice of high-energy particle physics. We further evaluate the implications of the recent discovery of a Higgs-like particle at the CERN’s Large Hadron Collider for the charge (...)
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  2.  44
    Naturalness, Wilsonian renormalization, and “fundamental parameters” in quantum field theory.Joshua Rosaler & Robert Harlander - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 66:118-134.
  3.  33
    Higgs Naturalness and Renormalized Parameters.Robert Harlander & Joshua Rosaler - 2019 - Foundations of Physics 49 (9):879-897.
    A recently popular formulation of the Higgs naturalness principle prohibits delicate cancellations between running renormalized Higgs mass parameters and EFT matching corrections, by contrast with the principle’s original formulation, which prohibits delicate cancellations between the bare Higgs mass parameter and its quantum corrections. While the need for this latter cancellation is sometimes viewed as unproblematic since bare parameters are thought by some to be divergent and unphysical, renormalized parameters are finite and measurable, and the need for delicate cancellations between the (...)
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  4.  12
    Feynman diagrams: From complexity to simplicity and back.Robert Harlander - 2021 - Synthese 199 (5-6):15087-15111.
    The way from the path integral to Feynman diagrams is sketched. The emphasis is put on the decrease of complexity in this process, from infinite-dimensional integrals down to the apparent simplicity of child’s play. On the other hand, also the subsequent increase in complexity when using Feynman diagrams to make realistic physical predictions is described, thus illustrating the dialectic between the simplicity and clarity of Feynman diagrams, and the complexity in their practical applications.
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  5.  11
    Preface: Virtual Entities in Science.Robert Harlander, Jean-Philippe Martinez, Friedrich Steinle & Adrian Wüthrich - forthcoming - Perspectives on Science:1-6.
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  6.  44
    Naturalness, Hierarchy, and Fine-Tuning.Joshua Rosaler, Robert Harlander, Gregor Schiemann & Miguel Ángel Carretero Sahuquillo - 2019 - Foundations of Physics 49 (9):855-859.
    The requirement of naturalness has long served as an influential constraint on model-building in theoretical particle physics. Yet there are many ways of understanding what, precisely, this requirement amounts to, from restrictions on the amount of fine-tuning that a model can exhibit, to prohibitions on sensitive dependence between physics at different scales, to the requirement that dimensionless parameters defining the Lagrangian of a theory all be of order one unless they are protected by a symmetry. This workshop aims to clarify (...)
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  7.  3
    Das Standardmodell – Oder: Nichts hält länger als ein Provisorium.Robert Harlander - 2023 - In Helmut Fink & Meinard Kuhlmann (eds.), Unbestimmt und relativ?: Das Weltbild der modernen Physik. Springer Berlin Heidelberg. pp. 167-180.
    Dieser Beitrag bietet einen übergeordneten Blick auf das Standardmodell der Elementarteilchenphysik. Dabei steht weniger die Vollständigkeit im Vordergrund, als die Erläuterung der qualitativen Struktur des Modells, die klare Züge eines Provisoriums erkennen lässt. Um dies zu verstehen, werden auch einige Aspekte wie Feynman-Diagramme und die Rolle des Higgsbosons auf möglichst allgemein zugänglichem Niveau erläutert.
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  8.  49
    Preface to Naturalness, Hierarchy, and Fine-Tuning.Joshua Rosaler, Robert Harlander, Gregor Schiemann & Miguel Ángel Carretero Sahuquillo - 2019 - Foundations of Physics 49 (9):855-859.
    The requirement of naturalness has long served as an influential constraint on model-building in theoretical particle physics. Yet there are many ways of understanding what, precisely, this requirement amounts to, from restrictions on the amount of fine-tuning that a model can exhibit, to prohibitions on sensitive dependence between physics at different scales, to the requirement that dimensionless parameters defining the Lagrangian of a theory all be of order one unless they are protected by a symmetry. This workshop aims to clarify (...)
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