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College of Arts and Science

Physics professor receives a DOE topical collaboration grant to study heavy-quark physics

Dr. Michael Strickland's group will participate in a new Topical Theory Collaboration funded by DOE’s Office of Nuclear Physics to explore the behavior of heavy flavor particles. The collaboration will receive $2.5 Million from the DOE Office of Science, Office of Nuclear Physics, over five years. That funding will provide partial support for six graduate students and three postdoctoral fellows at 10 institutions, as well as a senior staff position at one of the national laboratories. It will also establish a bridge junior faculty position at žžÀ².

Tags: Research and Science, Department of Physics, College of Arts and Science, Physics, Center for Nuclear Research, Quark-gluon Plasma, Department of Energy

Physics

Neutron star merger (Simulated Image Courtesy NASA Goddard)

Research Update: Studying neutron stars with gravitational waves

Neutron stars are some of the densest objects in the universe, and as such, the conditions at the cores of these extreme objects are impossible to reproduce on Earth. However, we can use data from the Laser Interferometer Gravitational Wave Observatory (LIGO) and the Virgo gravitational wave detector to gain insights into the physics of neutron stars.

Tags: Research and Science, Department of Physics, College of Arts and Science, Astrophysics, Neutron Stars, Gravitational Waves

Physics

Physics professor receives DOE grant to study the quark-gluon plasma

Up until approximately 10^(-5) seconds after the Big Bang, the Universe was is a primordial state of matter called a quark-gluon plasma (QGP).  This is due to the fact that the early Universe was extremely hot and in such a hot environment normal matter, e.g., atoms, atomic nuclei, and even neutrons and protons, did not exist.

Tags: Research and Science, Department of Physics, College of Arts and Science, Quark-gluon Plasma, Quantum Chromodynamics, Early Universe, Department of Energy

Physics

Physics professor receives NIH grants to study membrane proteins

The National Institutes of Health (NIH) recently awarded a $1.86 million grant to Thorsten-Lars Schmidt, Ph.D., to develop molecular tools that help researchers to understand membrane proteins.  As an add-on the NIH awarded Dr. Schmidt an instrumentation grant for a high-end Atomic Force Microscope.

Tags: Research and Science, Department of Physics, College of Arts and Science, Biophysics, National Institute of Health, Membrane Proteins

Physics

Physics Professor receives R35 Grant from the National Institutes for Health

The National Institutes of Health (NIH) recently awarded a $1.86 million grant to Thorsten-Lars Schmidt, Ph.D., to develop molecular tools that help researchers to understand membrane proteins.  As an add-on the NIH awarded Dr. Schmidt an instrumentation grant for a high-end Atomic Force Microscope.

Tags: Research and Science, Department of Physics, College of Arts and Science, Biophysics, National Institute of Health, Membrane Proteins

Physics