Polarity control of carrier injection at ferroelectric/metal interfaces for electrically switchable diode and photovoltaic effects
arXiv:1108.3171 · doi:10.1103/PhysRevB.84.125305
Abstract
We investigated a switchable ferroelectric diode effect and its physical mechanism in Pt/BiFeO3/SrRuO3 thin-film capacitors. Our results of electrical measurements support that, near the Pt/BiFeO3 interface of as-grown samples, a defective layer (possibly, an oxygen-vacancy-rich layer) becomes formed and disturbs carrier injection. We therefore used an electrical training process to obtain ferroelectric control of the diode polarity where, by changing the polarization direction using an external bias, we could switch the transport characteristics between forward and reverse diodes. Our system is characterized with a rectangular polarization hysteresis loop, with which we confirmed that the diode polarity switching occurred at the ferroelectric coercive voltage. Moreover, we observed a simultaneous switching of the diode polarity and the associated photovoltaic response dependent on the ferroelectric domain configurations. Our detailed study suggests that the polarization charge can affect the Schottky barrier at the ferroelectric/metal interfaces, resulting in a modulation of the interfacial carrier injection. The amount of polarization-modulated carrier injection can affect the transition voltage value at which a space-charge-limited bulk current-voltage (J-V) behavior is changed from Ohmic (i.e., J ~ V) to nonlinear (i.e., J ~ V^n with n \geq 2). This combination of bulk conduction and polarization-modulated carrier injection explains the detailed physical mechanism underlying the switchable diode effect in ferroelectric capacitors.
Accepted for publication in Phys. Rev. B
Cited by in corpus (11)
- Perovskites for Solar and Thermal Energy Harvesting: State of the Art Technologies, Current Scenario and Future Directions
- Photoferroelectric oxides
- Switchable and unswitchable bulk photovoltaic effect in two-dimensional interlayer-sliding ferroelectrics
- Bulk photovoltaic effect in BaTiO-based ferroelectric oxides: An experimental and theoretical study
- Non-volatile bipolar resistive switching in sol-gel derived BiFeO3 thin films
- Selecting Steady and Transient Photocurrent Response in BaTiO3 Films
- Multilevel recording in Bi-deficient Pt/BFO/SRO heterostructures based on ferroelectric resistive switching targeting high-density information storage in nonvolatile memories
- Switchable Giant Bulk Photocurrents and Photo-spin-currents in Monolayer PT-symmetric Anti-ferromagnet MnPSe3
- Influence of temperature and wavelength on the switchable photovoltaic response of a BiFe0.95Mn0.05O3 thin film
- Tailoring the photovoltaic effect in (111) oriented BiFeO3/LaFeO3 superlattices
- Crossover between bulk and interface photovoltaic mechanisms in ferroelectric vertical heterostructure