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

Increasing impact ionization rates in Si nanoparticles through surface engineering: A density functional study

by Gergely Zimanyi | Aug 30, 2013 | Papers

2013. Voros M., A. Gali, D. Rocca, G. Galli, and G.T. Zimanyi. Increasing impact ionization rates in Si nanoparticles through surface engineering: A density functional study. Phys. Rev. B, 87: 155402.

First order reversal curve studies of permanent magnets

by Gergely Zimanyi | Aug 30, 2012 | Papers

2012. Schrefl T., T. Shoji, M. Winklhofer, H. Oezelt, M. Yano and G.T. Zimanyi. First order reversal curve studies of permanent magnets Journal of Magnetism and Magnetic Materials, 111: 07A728.

Effect of symmetry breaking on the optical absorption of semiconductor nanoparticles

by Gergely Zimanyi | Aug 30, 2011 | Papers

2011. Gali, A, E. Kaxiras, G.T. Zimanyi, S. Meng. Effect of symmetry breaking on the optical absorption of semiconductor nanoparticles. Physical Review B 84, 035325.

Vertically graded anisotropy in Co/Pd multilayers

by Gergely Zimanyi | Aug 30, 2010 | Papers

2010. Kirby, B. J., J.E. Davies, K. Liu, S.M Watson, G.T. Zimanyi, R.D. Schull, P.A. Kienzle, J.A. Borchers, Vertically graded anisotropy in Co/Pd multilayers. Physical Review B, 81: 100405.

High-Energy Excitations in Silicon Nanoparticles

by Gergely Zimanyi | Aug 30, 2009 | Papers

2009. Gali, A., M. Voros, D. Rocca, G.T. Zimanyi, G. Galli. High-Energy Excitations in Silicon Nanoparticles. Nanoletters, 9: 3780.

Direct observation of magnetic gradient in Co/Pd pressure-graded media

by Gergely Zimanyi | Aug 30, 2009 | Papers

2009. Kirby B.J., S.M. Watson, J.E. Davies, G.T. Zimanyi, K. Liu, R.D. Schull, and J.A. Borchers. Direct observation of magnetic gradient in Co/Pd pressure-graded media. Journal of Applied Physics 105: 07C929.
« 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 8

Contact Us

Increasing impact ionization rates in Si nanoparticles through surface engineering: A density functional study

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