Search
Now showing items 1-10 of 296
TUNNEL MAGNETORESISTANCE OF AN ORGANIC MOLECULE junction
(Fig. 1).
The work is based on the tight-binding Hamiltonian model and within the
framework of a non-equilibrium Green’s function (NEGF) technique. It is shown
that tunnel magnetoresistance (TMR) of molecular junction can be large...
TUNNELING MAGNETORESISTANCE OF POLYACENE-BASE MAGNETIC JUNCTIONS
typical
ferromagnetic (FM) metal with simple cubic structure as the electrode and
polyacene as the molecule. Based on Landauer Formalism, we determined the
current-voltage (I-V) characteristic of the system. In addition, the tunnel
magnetoresistance...
Tunnel Magnetoresistance of an Organic Molecule Junction
on the tight-binding Hamiltonian model and within the
framework of a non-equilibrium Green’s function (NEGF) technique. It is shown that tunnel
magnetoresistance (TMR) of molecular junction can be large (over 60 %) by adjusting the...
Tunnel magnetoresistance of the system of ferromagnetic electrode/ Polyacetylene/ ferromagnetic electrode:A Green’s function approach
(FM)-molecule-FM junctions for the molecule to be trans-polyacetylene (t-PA). The conductance
properties of the spin system are studied for a t-PA molecule of fixed length. It is shown that tunnel
magnetoresistance (TMR) of the molecular junction can be quite...
Magnetoreresistance of carbon nanotube-polypyrrole composite yarns
D Mott variable range hopping (VRH) law atT< 100 K. Both positive and negative magnetoresistance (MR) were observed by increasing magneticfield. The MR data were analyzed based a theoretical model. A quadratic positive and negative MR was observed...
Magnetoresistance Mechanisms in Carbon-Nanotube Yarns
and magneticfield. The conductivity was well explained by 3D Mott Variable Range Hopping (VRH) law atT< 100 K. The hopping effective dimension is reduced with increasing of magnetic field. Negative magnetoresistance (MR) was observed at different magnetic field...
Structure and Magnetotransport Properties of Nanocrystalline La0.85Bi0.15MnO3 Prepared By Mechanical Activation
The nanocrystalline samples of La0.85Bi0.15MnO3 compound, prepared by mechanical activation, were studied by means of X-ray diffraction, transmission electron microscopy, resistivity and magnetoresistance measurements. The results show...