Pietro Dall’Olio
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Assistant Professor of Computer Science
Faculty Researcher
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Pietro Dall’Olio's research investigates theoretical aspects of quantum field theory, particularly focusing on generalized parton distributions and their connection to Lorentz symmetry and the DGLAP equation. His work explores the mathematical frameworks used to describe subatomic particle interactions, including the application of Landau-Khalatnikov-Fradkin transformations to analyze quark propagators. Dall'Olio also examines the scheme dependence of renormalization group improvement in infrared Yang–Mills theory and investigates the role of homotopy data within lattice field theory. His recent publications include studies on these topics, with a forward-looking paper on relational foundations for spacetime quantum physics scheduled for 2025. Dall'Olio holds an h-index of 5 with 65 citations across 20 publications, indicating recent activity in his field.
Metrics
- h-index: 5
- Publications: 20
- Citations: 65
Selected Publications
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Towards Relational Foundations for Spacetime Quantum Physics (2025)
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Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge (2024)
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Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge (2024)
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Review of: "Dimensional Regularization as Mass Generating Mechanism" (2023)
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Exploiting the scheme dependence of the renormalization group improvement in infrared Yang–Mills theory (2022)
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Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator (2021)
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Homotopy data as part of the lattice field: A first study (2021)
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Homotopy data as part of the lattice field: A first study (2021)
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Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator (2021)
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Topological aspects of fields modeled using extended lattice fields: a first study (2021)arXiv (Cornell University) OpenAlex
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Exploiting the scheme dependence of the renormalization group improvement in infrared Yang-Mills theory (2020)
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Landau-Khalatnikov-Fradkin transformations, Nielsen identities, their equivalence, and implications for QCD (2020)
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Landau-Khalatnikov-Fradkin transformation for the gluon propagator (2019)arXiv (Cornell University) OpenAlex
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Fermion Propagator in QED - Landau-Khalatnikov-Fradkin Transformations (2019)
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A Fresh Look at the (Non-)Abelian Landau--Khalatnikov--Fradkin Transformations (2018)
Collaboration Network
Top Collaborators
- Homotopy data as part of the lattice field: A first study
- Topological aspects of fields modeled using extended lattice fields: a first study
- Homotopy data as part of the lattice field: A first study
- Towards Relational Foundations for Spacetime Quantum Physics
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator
- Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge
- Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge
- Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge
- Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge
- Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge
- Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge
- Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge
- Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge
- Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge
- Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge
- Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge
- Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge
- Unraveling generalized parton distributions through Lorentz symmetry and partial DGLAP knowledge
- Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge
- Exploiting the scheme dependence of the renormalization group improvement in infrared Yang–Mills theory