Using a continuum Dirac theory, we study the density and spin response of zigzag edge-terminated graphene ribbons subjected to edge potentials and Zeeman fields. Our analytical calculations of the density and spin responses of the closed system (fixed particle number) to the static edge fields, show a highly nonlinear Weber-Fechner type behavior where the response depends logarithmically on the edge potential. The dependence of the response on the size of the system (e.g., width of a nanoribbon) is also uncovered. Zigzag edge graphene nanoribbons, therefore, provide a realization of response of organs such as the eye and ear that obey Weber-Fechner law. We validate our analytical results with tight-binding calculations. These results are cr...
We study the electronic screening of the long-range Coulomb interaction in graphene nanoribbons (GNR...
This document is the unedited Author’s version of a Submitted Work that was subsequently accepted fo...
By employing a self-consistent approach, we reveal a number of unique properties of zigzag graphene ...
Using a continuum Dirac theory, we study the density and spin response of zigzag edge-terminated gra...
Using a continuum Dirac theory, we study the density and spin response of zigzag edge-terminated gra...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
The electronic structure and magnetic characteristics of Klein graphene nanoribbons (KGNRs), as obse...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
In this paper, we study zigzag graphene nanoribbons with edges reconstructed with Stone-Wales defect...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
The effects of ribbon size on the spin properties of zigzag graphene nanoribbon (ZGNR) with and with...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
We study the electronic screening of the long-range Coulomb interaction in graphene nanoribbons (GNR...
This document is the unedited Author’s version of a Submitted Work that was subsequently accepted fo...
By employing a self-consistent approach, we reveal a number of unique properties of zigzag graphene ...
Using a continuum Dirac theory, we study the density and spin response of zigzag edge-terminated gra...
Using a continuum Dirac theory, we study the density and spin response of zigzag edge-terminated gra...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
The electronic structure and magnetic characteristics of Klein graphene nanoribbons (KGNRs), as obse...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
In this paper, we study zigzag graphene nanoribbons with edges reconstructed with Stone-Wales defect...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
The effects of ribbon size on the spin properties of zigzag graphene nanoribbon (ZGNR) with and with...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
We study the electronic screening of the long-range Coulomb interaction in graphene nanoribbons (GNR...
This document is the unedited Author’s version of a Submitted Work that was subsequently accepted fo...
By employing a self-consistent approach, we reveal a number of unique properties of zigzag graphene ...