activity
19962003
most citedVibration-assisted electron tunneling in C_{140} single-molecule transistors

6 citations · 9 across the 4 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall20036 cited

Vibration-assisted electron tunneling in C_{140} single-molecule transistors

A. N. Pasupathy, J. Park, C. Chang +8

We measure electron tunneling in single-molecule transistors made from C_{140}, a molecule with a mass-spring-mass geometry chosen as a model system to study electron-vibration cou…

cond-mat.mtrl-sci20032 cited

Fracture of Notched Single Crystal Silicon

Nicholas P. Bailey, James P. Sethna

We study atomistically the fracture of single crystal silicon at atomically sharp notches with opening angles of 0 degrees (a crack), 70.53 degrees, 90 degrees and 125.3 degrees. S…

cond-mat.mtrl-sci2002

KMC-MD Investigations of Hyperthermal Copper Deposition on Cu(111)

J. M. Pomeroy, J. Jacobsen, C. C. Hill +2

Detailed KMC-MD (kinetic Monte Carlo-molecular dynamics) simulations of hyperthermal energy (10-100 eV) copper homoepitaxy have revealed a re-entrant layer-by-layer growth mode at…

cond-mat.mtrl-sci20021 cited

Crack Growth Laws from Symmetry

James P. Sethna

Reviewing work done in collaboration with Jennifer Hodgdon, we derive the most general crack growth law allowed by symmetry for mixed-mode three-dimensional fracture. We do so usin…

cond-mat.mtrl-sci2001

Formal Considerations about Fracture: Nucleation and Growth

James P. Sethna

In this paper, we'll answer several abstract, formal questions about the nature of crack growth and nucleation. Bringing a field theory point of view to fracture illuminates things…

cond-mat.mtrl-sci2000

Dislocation Mobility in Two-dimensional Lennard-Jones Material

N. Bailey, J. Sethna, C. Myers

In seeking to understand at a microscopic level the response of dislocations to stress we have undertaken to study as completely as possible the simplest case: a single dislocation…