Magnetic glass in Shape Memory Alloy : Ni45Co5Mn38Sn12
arXiv:1206.2024 · doi:10.1088/0953-8984/24/38/386004
Abstract
The first order martensitic transition in the ferromagnetic shape memory alloy Ni45Co5Mn38Sn12 is also a magnetic transition and has a large field induced effect. While cooling in the presence of field this first order magnetic martensite transition is kinetically arrested. Depending on the cooling field, a fraction of the arrested ferromagnetic austenite phase persists down to the lowest temperature as a magnetic glassy state, similar to the one observed in various intermetallic alloys and in half doped manganites. A detailed investigation of this first order ferromagnetic austenite (FM-A) to low magnetization martensite (LM-M) state transition as a function of temperature and field has been carried out by magnetization measurements. Extensive cooling and heating in unequal field (CHUF) measurements and a novel field cooled protocol for isothermal MH measurements (FC-MH) are utilized to investigate the glass like arrested states and show a reverse martensite transition. Finally, we determine a field -temperature (HT) phase diagram of Ni45Co5Mn38Sn12 from various magnetization measurements which brings out the regions where thermodynamic and metastable states co-exist in the HT space clearly depicting this system as a 'Magnetic Glass'.
Magnetic field tunes kinetic arrest and CHUF shows devitrification and melting of Magnetic glass
References in corpus (9)
- Relating supercooling and glass-like arrest of kinetics for phase separated systems: studies on doped CeFe and (La,Pr,Ca)MnO
- Anomalous First Order Transition in : An interplay between kinetic arrest and thermodynamic transitions
- Coexisting tuneable fractions of glassy and equilibrium long-range-order phases in manganites
- Field induced magnetic transition and metastability in Co substituted
- Conversion of glassy antiferromagnetic-insulating phase to equilibrium ferromagnetic-metallic phase by devitrification and recrystallization in Al substituted PrCaMnO
- Contrasting the magnetic response between magnetic-glass and reentrant spin-glass
- Excess specific heat and evidence of zero point entropy in magnetic glassy state of half-doped manganites
- Studies on Magnetic-field induced first-order transitions
- Relating field-induced shift in transition temperature to the kinetics of coexisting phases in magnetic shape memory alloys