• Paul Canfield of ISU, Ames Laboratory elected to American Academy of Arts and Sciences
    Paul Canfield of ISU, Ames Laboratory elected to American Academy of Arts and Sciences
  • Fei receives NSF CAREER award
    Fei receives NSF CAREER award
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    Physicists use light flashes to discover, control new quantum states of matter
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    Data flows from NASA’s TESS Mission, leads to discovery of Saturn-sized planet
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    Astronomers confirm that nearby star a good model of our early solar system
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    Researchers image quasiparticles that could lead to faster circuits, higher bandwidths
  • A first sighting of the Higgs boson decay to quarks with the ATLAS experiment at the Large Hadron Collider
    A first sighting of the Higgs boson decay to quarks with the ATLAS experiment at the Large Hadron Collider
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    Department of Physics and Astronomy Professor and UConn discover superconductor with bounce
  • Synthesis and exotic physics of novel quantum materials - August 1-3, 2018
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    Costas Soukoulis elected to National Academy of Inventors
  • ISU physicists help demonstrate existence of new subatomic structure
    ISU physicists help demonstrate existence of new subatomic structure
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  • Tringides receives the 2017 Theodore E. Madey Award from the American Vacuum Society
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  • RHIC helps answer the question, "How did the proton get its spin?"
    RHIC helps answer the question, "How did the proton get its spin?"
  • New detector technology for neutrino experiments. ISU postdoc Carrie McGivern inspects part of the ANNIE detector.
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  • NSF and DOE honors for Flint and Weinstein.
    NSF and DOE honors for Flint and Weinstein.
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    Iowa State researchers describe copper-induced misfolding of prion proteins
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    Citizen Scientists Lead Iowa State Astronomer to Mystery Objects in Space
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    Newly discovered material property may lead to high temp superconductivity
  • Kepler astronomers discover ancient star with five Earth-size planets
    Kepler astronomers discover ancient star with five Earth-size planets
  • New material discovery allows study of elusive Weyl fermion
    New material discovery allows study of elusive Weyl fermion
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Department of Physics & Astronomy

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The Department has active research programs in Astronomy/Astrophysics, Condensed Matter Physics, High-energy Physics, Nuclear Physics, and Biophysics. Our high-energy physics, particle astrophysics and nuclear physics groups are involved in experiments which recreate the conditions of the early universe and help explain how it has evolved. In providing instruction in classical and modern physics, we cover such areas as mechanics, electricity and magnetism, thermodynamics and statistical mechanics, introductory modern physics, and quantum mechanics.

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Dr. Thomas IadecolaWe are excited to welcome Dr. Thomas Iadecola to our department.  He received his PhD from Boston University under the supervision of Prof. Claudio Chamon in 2017.  He has been a JQI Theoretical Postdoctoral Fellow at the University of Maryland, College Park from 2017 - present.  Tom works on a variety of topics in quantum condensed matter theory, with special emphasis on out-of-equilibrium quantum systems and topological states of matter. On the nonequilibrium side, he studies properties of highly-excited many-body states and the surprising phenomena they harbor that challenge deeply ingrained intuition based on quantum statistical mechanics. On the topological side, he focuses on states of matter whose properties cannot be understood within the traditional paradigm of spontaneous symmetry breaking, and which could enable the robust storage and manipulation of quantum information.

极光加速器官方网站中国版We are excited to welcome Dr. Srimoyee Sen in our department. She received her PhD from the University of Maryland, College Park under the supervision of Prof. Paulo Bedaque in 2015. She was a postdoctoral research associate at University of Arizona in 2015-2017 and is currently a postdoctoral research associate at the Institute for Nuclear Theory at the University of Washington. Srimoyee is exploring quantum phase transitions in dense QCD. Her research ties together modern ideas of topological phase transitions in condensed matter physics with that of nuclear and particle physics. She has expertise in lattice QCD, effective field theory, neutrino and nuclear astrophysics and the QCD phase diagram.

We are excited to welcome Dr. Jacob Simon to the Physics and Astronomy Department. He received his Ph.D. in Astrophysics at the University of Virginia, Charlottesville under the supervision of Prof. John Hawley in 2010. He then became a Postdoctoral Research Associate at the Joint Institute for Laboratory Astrophysics (JILA) from 2010 to 2013, a NASA Sagan Fellow at the Southwest Research Institute from 2013 to 2016, and he is currently a Senior Research Associate at the University of Colorado, Boulder. Dr. Simon is a computational astrophysicist applying high performance computing techniques to the problems of turbulence and accretion in protoplanetary disks, to understand how the Solar System and planetary systems around other stars form and evolve.

Dr. Jacob Simon