Events
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CANCELLED: Physics Colloquium – Chavdar Slavov
Chemistry 108 2050 E Kenwood Blvd, Milwaukee, WI, United StatesLight-driven Molecular Transformations Captured by Ultrafast Spectroscopy
Dr. Chavdar Slavov, Assistant Professor, Department of Chemistry
University of South FloridaFemtosecond time-resolved spectroscopy reveals the excited-state pathways and chromophore dynamics that transform light absorption into photochemical and biological function. Using phytochromes, I will illustrate how the protein environment controls chromophore isomerization, which in turn initiates structural changes that regulate biological signaling.
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Physics Colloquium – Daniel Agterberg
Chemistry 108 2050 E Kenwood Blvd, Milwaukee, WI, United StatesAltermagnets: A New Technologically Relevant Class of Quantum Magnets
Daniel Agterberg
Professor, University of Wisconsin-MilwaukeeMagnetism underpins much of our current information technology. It also derives purely from quantum mechanics. Traditionally, discussion emphasizes two classes of magnets: usual ferromagnets, which underly data storage devices, and antiferromagnets, in which magnetic moments adopt an up-down structural motif. Recently, a new class of magnets, altermagnets, has generated tremendous interest. This class mixes properties of ferromagnets and antiferromagnets in a way that is promising for future applications.
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CGCA Seminar – Joaquin Duran
Kenwood IRC 2175 Milwaukee, WI, United StatesA Parameter Study of Eccentric Accretion Disks in GRMHD
Joaquin Duran
University of Texas at San AntonioWe present a three dimensional GRMHD parameter study of circularized and eccentric black hole accretion disks using the KORAL code. Our simulations span SANE and MAD magnetic flux states, black hole spins of a=0 and a=0.9, and disk eccentricities of e=0, 0.38, and 0.5. We investigate how orbital eccentricity changes disk morphology, radial inflow, magnetization, accretion variability, outflow efficiency, and disk outflow orientation. Eccentric disks develop stronger nonaxisymmetric structure and shock heated spiral features, while their radial inflow differs from circularized controls. The magnetic response depends strongly on flux state: eccentric SANE models are less magnetized and less variable, while eccentric MAD models are more magnetized and more variable. In MAD, eccentricity is also associated with larger disk and magnetized polar outflow orientation excursions.
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Physics Colloquium – Tony Rodriguez
Chemistry 108 2050 E Kenwood Blvd, Milwaukee, WI, United StatesFrom Extreme Binary Stars to Self-Driving Cars
Dr. Tony Rodriguez
Data Scientist, Waymo LLC (formerly Harvard CfA)Compact objects -- white dwarfs (WDs), neutron stars, and black holes -- are laboratories for studying extreme physics under conditions unable to be replicated on Earth. When located in binaries, it becomes possible to measure properties of compact objects such as magnetic field strength, temperature, and the effects of mass transfer from a companion. In this talk, I will describe recent advancements in our understanding of WD magnetism.
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CGCA Seminar – Nick Conroy
Kenwood IRC 2175 Milwaukee, WI, United StatesTitle and abstract to be determined
Nick Conroy
IAA/CfAThe abstract for this talk will be added as soon as it is made available.
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Physics Colloquium – Wei Kong
Chemistry 108 2050 E Kenwood Blvd, Milwaukee, WI, United StatesSolving Atomic Structures of Molecules and Nanoclusters Using Superfluid Helium Droplet Cooling and Laser Alignment
Wei Kong
Department Head & Professor, Department of Chemistry - Oregon State UniversityWe are building a prototype experimental apparatus to determine the atomic structures of molecules and nanoclusters using electron diffraction. We use superfluid helium droplets for cooling, thereby achieving effective field-induced orientation and alignment of the sample species. Electron diffraction patterns from the chosen orientation can then be accumulated until a satisfactory signal-to-noise ratio can be obtained.
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CGCA Seminar – Patrick Brady
Kenwood IRC 2175 Milwaukee, WI, United StatesTitle and abstract to be determined
Patrick Brady
Professor, University of Wisconsin-MilwaukeeThe abstract for this talk will be added as soon as it is made available.
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Physics Colloquium – Tod Lauer
Lapham 162 3209 N. Maryland Ave., MilwaukeeHow Dark is Space?
Tod R. Lauer
Astronomer, NOIRLabWe used NASA’s New Horizons spacecraft to measure the cosmic optical background (COB) intensity integrated over 0.4 ≲ λ ≲ 0.9 μm. The survey comprises 16 high Galactic-latitude fields. Images were obtained with the LORRI camera when New Horizons was 57 AU distant from the Sun. As such, the sky intensity measurements were unaffected by zodiacal light, which strongly interferes with COB measurements attempted from the inner solar system. T he survey yields a highly significant detection (6.8σ) of the COB at 11.16 ± 1.65 (1.47 sys, 0.75 ran) nW m−2 sr−1 at the LORRI pivot wavelength of 0.608 μm. The estimated integrated intensity from background galaxies, 8.17 ± 1.18 nW m−2 sr−1, can account for the great majority of this signal. The rest of the COB signal is formally classified as anomalous intensity but is not significantly different from zero. The simplest interpretation is that the COB is completely due to galaxies.
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Physics Colloquium – Charlotte Ward
Chemistry 108 2050 E Kenwood Blvd, Milwaukee, WI, United StatesBetter Together: Combining the Strengths of Rubin, Euclid, and Roman for Time-domain Science and Cosmology
Charlotte Ward
Assistant Professor, Department of Astronomy and Astrophysics in the Eberly College of Sciences at Penn StateWe have entered an exciting decade for survey science, with space-based surveys such as Euclid and Roman and ground-based surveys such as Rubin Observatory's Legacy Survey of Space and Time (LSST) providing overlapping imaging datasets across the optical and IR. LSST will identify thousands of tidal disruption events (TDEs) and millions of AGN and supernovae – including hundreds of gravitationally lensed supernovae (gLSNe) from which we can measure the Hubble Constant.
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Physics Colloquium – Sabine Botha
Chemistry 108 2050 E Kenwood Blvd, Milwaukee, WI, United StatesBringing XFEL Science to the Laboratory: Commissioning the Compact X-ray Light Source at Arizona State University
Sabine Botha, Research Assistant Professor, Department of Physics
Arizona State UniversityCompact accelerator-driven X-ray sources are emerging as a new class of laboratory-scale facilities capable of delivering capabilities traditionally available only at large national user facilities. At Arizona State University, the Compact X-ray Light Source (CXLS) is currently undergoing commissioning, while its successor, the Compact X-ray Free Electron Laser (CXFEL), is under construction. Together, these instruments aim to bring ultrashort, high-brightness X-ray pulses into the university laboratory, enabling new opportunities in structural biology, medical imaging, atomic, molecular and optical physics, and the study of condensed matter and quantum materials.