Novel dynamical effects and persistent memory in phase separated manganites
arXiv:cond-mat/0202263 · doi:10.1103/PhysRevLett.89.137001
Abstract
The time dependent response of the magnetic and transport properties of Fe-doped phase separated (PS) manganite LaCaMnO is reported. The nontrivial coexistence of ferromagnetic (FM) and non FM regions induces a slow dynamics which leads to time relaxation and cooling rate dependence within the PS regime. This dynamics influences drastically on physical properties. On one hand, metallic like behavior, assumed to be a fingerprint of percolation, can be also observed before the FM phase percolates as a result of dynamical contributions. On the other one, two novel effects for the manganites are reported, namely the rejuvenation of the resistivity after ageing, and a persistent memory of low magnetic fields ( 1 T), imprinted in the amount of the FM phase. As a distinctive fact, this memory can be recovered through transport measurements.
4 pages, 4 figures included
References in corpus (2)
Cited by in corpus (35)
- Phase separation and the effect of quenched disorder in
- Ramp Reversal Memory and Phase-Boundary Scarring in Transition Metal Oxides
- Tunable temperature induced magnetization jump in a GdVO3 single crystal
- Evidence for Charge Glass-like Behavior in Lightly Doped La_{2-x}Sr_{x}CuO_{4} at Low Temperatures
- Critical exponents and the correlation length in the charge exchange manganite spin glass Eu_{0.5}Ba_{0.5}MnO_{3}
- Dilution of 2D antiferromagnetism by Mn site substitution in La{_1}Sr{_2}Mn{_{2-x}}Al{_x}O{_7}
- Thermodynamic modeling of phase separation in manganites
- Kinetic Spinodal Instabilities in the Mott Transition in V2O3: Evidence from Hysteresis Scaling and Dissipative Phase Ordering
- Slow Dynamics in Hard Condensed Matter: A Case Study of the Phase Separating System NdNiO
- Nonequilibrium Relaxations and Aging Effects in a Two-Dimensional Coulomb Glass
- The electrical current effect in phase separated La5/8-yPryCa3/8MnO3: Charge order melting vs. Joule heating
- Simultaneous electric and magnetic field induced nonvolatile memory
- Multivalued memory effects in electronic phase-change manganites controlled by Joule heating
- Influence of B - site Disorder in (B = Fe, Ru, Al and Ga) Manganites
- Low temperature irreversibility induced by thermal cycles on two prototypical phase separated manganites
- Temperature memory and resistive glassy behaviors of a perovskite manganite
- Low-Temperature Glassy Response of Ultrathin Manganite Films to Electric and Magnetic Fields
- Equilibrium tuned by a magnetic field in phase separated manganite
- High resolution determination of ferromagnetic metallic limit in epitaxial La1-xCaxMnO3 films on NdGaO3
- Off-stoichiometric effect on magnetic and electron transport properties of FeVAl in respect to NiVAl; Comparative study
- Electrical transport and magnetic properties of nanostructured La0.67Ca0.33MnO3
- Kinetically Decoupled Electrical and Structural Phase Transitions in VO2
- Metastable Resistivity States and Conductivity Fluctuations in Low-doped LaCaMnO Manganite Single Crystals
- Static and Dynamic Signatures of Anisotropic Electronic Phase Separation in La2/3Ca1/3MnO3 Thin Films under Anisotropic Strain
- Persistent magnetoresistive memory in phase separated manganites
- Tuning the phase transition dynamics by variation of cooling field and metastable phase fraction in Al doped PrCaMnO
- Novel dynamical effects and glassy response in strongly correlated electronic system
- Thermal cycling effects on static and dynamic properties of a phase separated manganite
- Magnetic field induced dielectric relaxation in the strain glass state of Pr0.6Ca0.4MnO3
- The dynamics of magnetization in phase separated manganite around half doping: a case study for PrSrMnGaO
- Thermal cycling memory in phase separated manganites
- Coexistance of volatile and non-volatile memristive effects in phase-separated LaCaMnO-based devices
- Controlling thermal cycling effect in phase separated manganites with high temperature thermal treatments
- Magnetic phase diagram of interacting nanoparticle systems under the mean field model
- Glass-like recovery of antiferromagnetic spin ordering and dimensional crossover in a photo-excited manganite PrCaMnO