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  1. Home
  2. Directory All
  3. Faculty
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Bedaque, Paulo

  • Professor
  • 3147 Physical Sciences Complex
  • 301.405.6148

Curriculum Vitae

Biography

Paulo Bedaque received his B.S. in 1985 from the Universidade de Sao Paulo, Brazil and his Ph.D. in 1994 from the University of Rochester. Following this, he served as a Postdoctoral Research Associate at the Massachussetts Institute of Technology and then at the Institute for Nuclear Theory at the University of Washington. He joined the scientific staff at Lawrencey Berkeley Lab in 2001 and joined UMD in 2006. Professor Bedaque's research career has focused on the interface of nuclear physics and particle physics with an emphasis on various aspects of QCD. He is a Fellow of the American Physical Society.

Research

Research Area:

  • Quarks, Hadrons & Nuclei


Research Projects:

  • Lattice field theory, Effective theories and other non-perturbative methods in Quantum Chromodynamics
  • Properties of superdense matter and compact astrophysical objects

Centers & Institutes: Maryland Center for Fundamental Physics

 

Teaching

  • Physics 102:Physics of Music
  • Physics 272: Introductory Physics: Fields
  • Physics 371: Modern Physics
  • Physics 401: Quantum Physics I
  • Physics 402: Quantum Physics II
  • Physics 412: Intermediate Electricity and Magnetism I
  • Physics 601: Theoretical Dynamics
  • Physics 603: Methods of Statistical Physics
  • Physics 612: Quantum and Statistical Physics I
  • Physics 747: Quantum Chromodynamics

News

UMD Physicists Chosen as 2010 APS Fellows

 

Baden, Drew

  • Professor
  • 3208D Physical Sciences Complex
  • 301.405.6069
  • Website

Curriculum Vitae 

Biography

Drew Baden has worked in many aspects of high-energy physics over the past 20 years, and was part of the D0 collaboration at Fermilab which, along with the CDF team, discovered the top quark in 1995. Since the late 1990s, he has been part of the Compact Muon Solenoid (CMS) collaboration at the Large Hadron Collider. He and his team are specifically responsible for designing, prototyping, testing and manufacturing the "trigger" electronics for the CMS hadron calorimeter.

Research

Research:

  • High Energy Physics

Teaching

  • Physics 275: Experimental Physics I
  • Physics 270: Electrodynamics, Light, Relativity & Modern Physics

News

  • O’Malley, Hoyer, Gallagher and Mote Celebrate Groundbreaking for Physical Sciences Complex
  • EPS to Honor DØ, CDF Collaborations for Top Quark Detection
  • LHC Scientists Finally Detect Most Favored Higgs Decay
  • 2013 EPS High Energy and Particle Physics Prize

Antonsen, Thomas

  • Distinguished University Professor
  • 3339 A.V. Williams Building
  • 301.405.1635
  • Website

Curriculum Vitae

Biography

Thomas Antonsen graduated from Cornell University where he received a B.S. degree in electrical engineering in 1973 and M.S. and Ph.D. degrees in 1976 and 1977, respectively. His research interests include the theory of magnetically confined plasmas, the theory and design of high power sources of coherent radiation, nonlinear dynamics in fluids, and the theory of the interaction of intense laser pulses and plasmas. He is a professor in the Department of Electrical and Computer Engineering, a fellow of the American Physical Society, Division of Plasma Physics, and a fellow of the Institute of Electrical and Electronics Engineers. He is a UMD Distinguished University Professor.

Research

  • Nonlinear Dynamics & Chaos
  • Plasma Theory

Centers & Institutes: Institute for Research & Applied Physics

Teaching

  • Physics 132: Fundamentals of Physics for Biologists II
  • Physics 270: Electrodynamics, Light, Relativity & Modern Physics
  • Physics 606: Electrodynamics
  • Physics 761: Plasma Physics I: Survery

News

  • Thomas Antonsen Honored by the American Physical Society
  • Researchers Create On-Demand Cold Spots to Generate Electromagnetic Cone of Silence
  • Antonsen Receives IEEE Marie Sklodowska-Curie Award
  • Antonsen Named Distinguished University Professor
  • Thomas Antonsen Recognized by IEEE for Contributions to Vacuum Electronics
  • Thomas Antonsen Named 2011 IEEE Fellow

Anlage, Steven

  • Professor
  • 1363 John S. Toll Physics Building
  • 301.405.7321
  • Website

Curriculum Vitae

Biography

Steven Anlage received his Ph.D. in Applied Physics from the California Institute of Technology. He is a member of the Quantum Materials Center at UMD, where he leads experimental research activities in superconducting metamaterials, quantum chaos, and various types of quantitative high-resolution near-field microscopy. His research focus is on the basic physics of superconducting materials (both natural and artificial) and addressing fundamental questions concerning wave propagation in complex scattering systems. He is also active in developing applications that exploit time-reversal invariance and spatial reciprocity for electromagnetic wave propagation, such as directed communication and wireless power transfer. He is a UMD Distinguished Scholar-Teacher.

Research

Research Area:

  • Condensed Matter Experiment
  • Quantum Science and Technology


Research Projects:

  • Study of correlated-electron materials with nm-resolution near-field and far-field microwave microscopes
  • Experimental investigation of the fundamental electrodynamic properties of exotic superconductors
  • Investigation of quantum and classical superconducting metamaterials with novel electrodynamic properties
  • Investigation of fundamental questions in quantum chaos through electromagnetic analog experiments
  • Experiments on photonic topological insulators and other optical analogs of electronic systems

Full Publication List

Centers & Institutes: Quantum Materials Center; Maryland NanoCenter 

Teaching

  • Physics 275: Experimental Physics I
  • Physics 276: Experimental Physics II
  • Physics 371: Modern Physics 
  • Physics 401: Quantum Physics I
  • Physics 402: Quantum Physics II
  • Physics 410: Classical Mechanics
  • Physics 798S: Special Problems in Advanced Physics: Superconductivity 

News

  • How Does Quantum Mechanics Meet Up With Classical Physics?
  • Unconventional Superconductor Acts the Part of a Promising Quantum Computing Platform
  • Time Delay Acquires a New Dimension
  • Researchers Create On-Demand Cold Spots to Generate Electromagnetic Cone of Silence
  • Going Beyond the Anti-Laser May Enable Long-Range Wireless Power Transfer
  • Anlage Named Finalist for Invention of the Year Award
  • UMD Gemstone Team TESLA Attend 2016 IEEE Wireless Power Transfer Conference
  • Steve Anlage Selected as UMD Distinguished Scholar-Teacher
  • New Material Becomes Invisible to Microwave Radiation with the Flip of a Switch

Agashe, Kaustubh

  • Professor
  • 3118 Physical Sciences Complex
  • 301.405.6018
  • Website

Curriculum Vitae

Biography

Kaustubh Agashe obtained his Ph.D. at the University of California, Berkeley in 1998. After conducting postdoctoral research at the University of Oregon, Johns Hopkins University and (briefly) the Institute of Advanced Study (Princeton), he joined the faculty of the physics department at Syracuse University in 2005. He then moved to the University of Maryland in 2007. Professor Agashe's research is in the field of theoretical particle physics (more details are under the "personal website" link). He works on ideas going beyond the standard model of particle physics. This research includes building new models and making predictions for them which can be tested in experiments ("phenomenology") and plotting direct production of new particles at high-energy colliders and calculating their indirect detection in lower-energy experiments.

Research

Research Area:

  • Elementary Particles

Centers & Institutes: Maryland Center for Fundamental Physics

Teaching

  • Physics 272 & 272H: Introductory Physics: Fields
  • Physics 373: Mathematical Methods for Physics II
  • Physics 411: Intermediate Electricity and Magnetism
  • Physics 601: Theoretical Dynamics
  • Physics 622: Introduction to Quantum Mechanics
  • Physics 752: Elementary Particles Physics II: Theory

News

Promotions and Appointments Effective July 1, 2017

 

 

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