1 citations · 2 across the 3 of their papers we have counts for
3 papers
cond-mat.mes-hall2020★ 1 cited
Consistent analytical solution for the response of a nanoscale circuit to a mode-locked laser
Mark J. Hagmann, Logan D. Gibb
It is now common practice to solve the Schrödinger equation to estimate the tunneling current between two electrodes at specified potentials, or the transmission through a potentia…
quant-ph2020★ 1 cited
Consistent analytical solution of the time-dependent Schrödinger equation for nanoscale circuits with laser-assisted quantum tunneling
Mark J. Hagmann, Logan D. Gibb
It is now common practice to solve the Schrödinger equation to estimate the tunneling current between two metal electrodes at specified potentials, or the transmission through a po…
physics.app-ph2020
Simple and accurate method to simulate resistors and wires in a nanoscale circuit
Mark J. Hagmann, Logan D. Gibb
In solving the Schrödinger equation to simulate a nanoscale circuit, we note that the mean free path for electrons in some metals is as large as 48 nm. Thus, the wavefunction may p…