Interplay of Coulomb Blockade and Ferroelectricity in Nano-Granular Materials
arXiv:1401.5429 · doi:10.1103/PhysRevB.89.054203
Abstract
We study electron transport properties of composite ferroelectrics --- materials consisting of metallic grains embedded in a ferroelectric matrix. In particular, we calculate the conductivity in a wide range of temperatures and electric fields, showing pronounced hysteretic behavior. In weak fields, electron cotunneling is the main transport mechanism. In this case, we show that the ferroelectric matrix strongly influences the transport properties through two effects: i) the dependence of the Coulomb gap on the dielectric permittivity of the ferroelectric matrix, which in turn is controlled by temperature and external field; and ii) the dependence of the tunneling matrix elements on the electric polarization of the ferroelectric matrix, which can be tuned by temperature and applied electric field as well. In the case of strong electric fields, the Coulomb gap is suppressed and only the second mechanism is important. Our results are important for i) thermometers for precise temperature measurements and ii) ferrroelectric memristors.
10 pages, 8 figures, http://link.aps.org/doi/10.1103/PhysRevB.89.054203
References in corpus (2)
Cited by in corpus (10)
- Dielectric sensing by charging energy modulation in a nano-granular metal
- Coupling of (ferro)electricity and magnetism through Coulomb blockade in Composite Multiferroics
- Electric field control of magnetic properties and magneto-transport in composite multiferroics
- Competition of the Coulomb and hopping based exchange interactions in granular magnets
- Influence of the Coulomb interaction on the exchange coupling in granular magnets
- Interplay of ferroelectricity and single electron tunneling
- Proximity coupling of granular film with ferroelectric substrate and giant electro-resistance effect
- Influence of image forces on the electron transport in ferroelectric tunnel junctions
- Time-dependent exchange creates the time-frustrated state of matter
- Influence of image forces on the interlayer exchange interaction in magnetic tunnel junctions with ferroelectric barrier