Zimanyi Group
  • Research
    • Projects
    • Papers
    • Talks
  • People
    • G.T. Zimanyi
    • Group
  • Teaching
    • Courses
    • Awards
  • Outreach
    • TEDx Davis
    • Energy Links
Select Page

Hysteresis in Frustrated Systems

by Gergely Zimanyi | Aug 30, 2000 | Papers

2000. Pazmandi, F., G. Zarand, K.F. Pal, and G.T. Zimanyi. Hysteresis in Frustrated Systems. Journal of Materials Processing & Manufacturing Science, 9: 27-32.

Static and Dynamic Coupling Transitions of Vortex Lattices in Disordered Anisotropic Superconductors

by Gergely Zimanyi | Aug 30, 2000 | Papers

2000. Olson, C., A. Kolton, N. Gronbech-Jensen, and G.T. Zimanyi. Static and Dynamic Coupling Transitions of Vortex Lattices in Disordered Anisotropic Superconductors. Phys. Rev. Letts. 85:5416-5419.

Two-Channel Versus Infinite-Channel Kondo Models for the Single-Electron Transistor

by Gergely Zimanyi | Aug 30, 2000 | Papers

2000. Zarand, G., G.T. Zimanyi, and F. Wilhelm. Two-Channel Versus Infinite-Channel Kondo Models for the Single-Electron Transistor. Phys. Rev. B62:8137.

Superconducting Single-Charge Transistor in a Tunable Dissipative Environment

by Gergely Zimanyi | Aug 30, 2000 | Papers

2000. Wilhelm, F., G. Schon, and G.T. Zimanyi. Superconducting Single-Charge Transistor in a Tunable Dissipative Environment. Physica B284:1810. Archive.

Melting of Moving Vortex Lattices in Systems with Periodic Pinning

by Gergely Zimanyi | Aug 30, 2000 | Papers

2000. Reichhardt, C., and G.T. Zimanyi. Melting of Moving Vortex Lattices in Systems with Periodic Pinning. Phys. Rev. B61:14354.

Shapiro Steps in Driven Vortex Lattices Interacting with Periodic Pinning Arrays

by Gergely Zimanyi | Aug 30, 2000 | Papers

2000. Reichhardt, C., R. Scalettar, G.T. Zimanyi, and N. Gronbech-Jensen. Shapiro Steps in Driven Vortex Lattices Interacting with Periodic Pinning Arrays. Physica C332:1.
« Older Entries
Next Entries »

Recent Posts

  • Orals
  • Topcon paper
  • Pinhole Formation
  • SETO
  • From Femtoseconds to Gigaseconds: The SolDeg Project to Analyze Heterojunction and TOPCon Cell Degradation with Machine Learning

Zimanyi Research Group

1-530-400-3936
zimanyi@physics.ucdavis.edu

Resources

  • Papers
  • Talks
  • Courses
  • Projects
  • Home » Papers » Page 13

Contact Us

Hysteresis in Frustrated Systems

Home | Privacy | Sitemap | Contact
© Zimanyi Group - UC Davis Physics Research