most citedSelf-Organization and the Physics of Glassy Networks

175 citations

11 papers

cond-mat.str-el200535 cited

First principles investigation of the electronic structure of La2MnNiO6: A room-temperature insulating ferromagnet

S. F. Matar, M. A. Subramanian, V. Eyert +2

Using first principles calculations within DFT based on the full potential APW+lo method, we calculated the electronic and magnetic structures for the ferromagnetic and antiferroma…

cond-mat.mtrl-sci2005

Electronic Structure and Origin of Ferromagnetism in CaB

Zachary M. Helms, Prasenjit Sen, Lubos Mitas

Electronic structure calculations using quantum Monte Carlo (QMC) methods conclusively show that pure CaB is a narrow-gap semiconductor with an -point gap eV. Thi…

hep-ph20051 cited

Phases of QCD

Thomas Schaefer

In these lectures we provide an introduction to the phase structure of QCD. We begin with a brief discussion of QCD, the symmetries of QCD, and what we mean by a ``phase of QCD''.…

cond-mat.mes-hall200519 cited

Reduction of Activation Energy Barrier of Stone-Wales Transformation in Endohedral Metallofullerenes

Woon Ih Choi, Gunn Kim, Seungwu Han +1

We examine effects of encapsulated metal atoms inside a C molecule on the activation energy barrier to the Stone-Wales transformation using {\it ab initio} calculations. The…

astro-ph2005

Test-Particle Diffusive Shock Acceleration in Relativistic Shocks

Donald C. Ellison

We present results from a fully relativistic Monte Carlo simulation of diffusive shock acceleration (DSA) in unmodified (i.e., test-particle) shocks. The computer code uses a singl…

astro-ph20052 cited

Thermal Particle Injection in Nonlinear Diffusive Shock Acceleration

Donald C. Ellison, Pasquale Blasi, Stefano Gabici

Particle acceleration in collisionless astrophysical shocks, i.e., diffusive shock acceleration (DSA), is the most likely mechanism for producing cosmic rays, at least below 10^{15…