Hannah Krehbiel
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Also affiliated: DSM (Netherlands) (1999); Rutherford Appleton Laboratory (1996); Centre National de la Recherche Scientifique (1992–1993); Université Libre de Bruxelles (1996–2001); École Polytechnique (1992–1993); Universität Hamburg (1966–1998); Queen Mary University of London (1996–2001); National Technical University of Athens (2001–2002); Lund University (1996–2001); Aix-Marseille Université (1996); Heidelberg University (1961–1988); Commissariat à l'Énergie Atomique et aux Énergies Alternatives (2001); Bundesministerium für Forschung, Technologie und Raumfahrt (1995–2001); Deutsches Elektronen-Synchrotron DESY (1966–2002); SLAC National Accelerator Laboratory (1995); Department of Space (1996); Christian-Albrechts-Universität zu Kiel (1996–2001); Joint Institute for Nuclear Research (1999–2002); Humboldt-Universität zu Berlin (1996–2000); Max Planck Institute for Physics (1979); Centre de physique des particules de Marseille (1996); Max Planck Institute for Astrophysics (1979); Laboratoire de Physique Nucléaire et de Hautes Énergies (1992–1993); Stanford Synchrotron Radiation Lightsource (1995); Federal Ministry of Education, Science and Research (1997–2001); CEA Paris-Saclay (2001); Hamburg Institut (Germany) (1993–2000); Interuniversity Institute for High Energies (1996); The University of Tokyo (1979); University of Glasgow (1994–1997); University of Birmingham (1995–1999); University of California, Davis (1995–1997); RWTH Aachen University (1979–1999)
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Hannah Krehbiel's research career has focused on experimental particle physics, investigating the fundamental properties of matter and the forces that govern it. Her early work involved experimental studies on multijet production in electron-positron annihilation at PETRA energies and the energy dependence of the strong coupling strength. She also contributed to measurements of proton and neutron electromagnetic form factors and the proton structure function F2(x, Q2) at the HERA collider.
Krehbiel was involved with the H1 experiment at HERA, contributing to the design and operation of its detectors, including tracking, calorimeter, and muon systems. Her publications from this period include the first measurement of the deep-inelastic structure of proton diffraction and the observation of planar three-jet events in e+e− annihilation, providing evidence for gluon bremsstrahlung. With a h-index of 50 and over 9,300 citations across nearly 200 publications, Krehbiel is recognized as a highly cited researcher. She collaborates with colleagues at the University of Arkansas at Little Rock, including Noureen Siraj, Mujeebat Bashiru, Mavis Forson, and Amanda Jalihal, and maintains an active laboratory website.
Metrics
- h-index: 50
- Publications: 198
- Citations: 9,342
Selected Publications
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FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent (2023)
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Understanding of Förster Resonance Energy Transfer (FRET) in Ionic Materials (2021)
Collaboration Network
Top Collaborators
- Understanding of Förster Resonance Energy Transfer (FRET) in Ionic Materials
- FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent
- Understanding of Förster Resonance Energy Transfer (FRET) in Ionic Materials
- FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent
- Understanding of Förster Resonance Energy Transfer (FRET) in Ionic Materials
- FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent
- Understanding of Förster Resonance Energy Transfer (FRET) in Ionic Materials
- FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent
- Understanding of Förster Resonance Energy Transfer (FRET) in Ionic Materials
- FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent
- Understanding of Förster Resonance Energy Transfer (FRET) in Ionic Materials
- FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent
- FRET-based carbazole-fluorescein ionic nanoparticle for use as an effective bioimaging agent