We comprehensively investigated the magnetic, ferroelectric, and ME properties of Ba2-xSrxCo2(Fe1-yAly)(12)O-22 single crystals in broad doping ranges of Sr (1.0 <= x <= 1.8) and Al (0.00 <= y <= 0.08). Most of the investigated compounds exhibit an intriguing coexistence of two apparently competing magnetic phases: a transverse conical (TC) and alternating longitudinal conical (ALC) spin structure. The magnetic properties show that the Ba0.2Sr1.8Co2(Fe0.96Al0.04)(12)O-22 crystal has the highest ordering temperature and largest volume fraction of the ALC phase at zero H; further, after the application of an in-plane H, it exhibits a maximized volume fraction of the metastable TC phase, resulting in the highest ME susceptibility and electric ...
We report magnetic susceptibility, resistivity, and heat capacity measurements on single crystals of...
M-type hexagonal ferrites with chemical composition Ba0.5Sr0.5CoxAlxFe12−2xO19(x = 0.0, 0.2, 0.4, 0....
Ba2Mg0.4Co1.6Fe12O22 was prepared in powder form by sonochemical co-precipitation and examined by X-...
We find the realization of large converse magnetoelectric (ME) effects at room temperature in a magn...
This thesis consists of in depth study of spin structure of magnetoelectric Y-type hexaferrite Ba2−x...
Producción CientíficaSingle phase multiferroics in which ordered magnetism and ferroelectricity coex...
It has been shown that BaFe12O19 is a perspective room-temperature multiferroic material. A large sp...
peer reviewedWe investigated the magnetic properties and magnetic phase transition in Y-type Ba0.5Sr...
This thesis consists of in depth study of spin structure of magnetoelectric Y-type hexaferrite Ba$_{...
Although the bulk hexaferrites are known to exhibit strong magnetoelectric (ME) effects near room te...
We report on structural, magnetic, and magnetoelectric (ME) properties of a U-type hexaferrite Sr 4 ...
In the last few decades, multiferroic (MF) materials have attracted interesting attention due to the...
Magnetic, electrical and magnetodielectric properties have been studied in Co-Ti co-doped M-type hex...
By employing resonant X-ray microdiffraction, we image the magnetisation and magnetic polarity domai...
The Co2+and W4+ions (x) doped M-type hexagonal Ba0.5Sr0.5CoxWxFe12−2xO19(x = 0.2, 0.4, 0.6, 0.8 and ...
We report magnetic susceptibility, resistivity, and heat capacity measurements on single crystals of...
M-type hexagonal ferrites with chemical composition Ba0.5Sr0.5CoxAlxFe12−2xO19(x = 0.0, 0.2, 0.4, 0....
Ba2Mg0.4Co1.6Fe12O22 was prepared in powder form by sonochemical co-precipitation and examined by X-...
We find the realization of large converse magnetoelectric (ME) effects at room temperature in a magn...
This thesis consists of in depth study of spin structure of magnetoelectric Y-type hexaferrite Ba2−x...
Producción CientíficaSingle phase multiferroics in which ordered magnetism and ferroelectricity coex...
It has been shown that BaFe12O19 is a perspective room-temperature multiferroic material. A large sp...
peer reviewedWe investigated the magnetic properties and magnetic phase transition in Y-type Ba0.5Sr...
This thesis consists of in depth study of spin structure of magnetoelectric Y-type hexaferrite Ba$_{...
Although the bulk hexaferrites are known to exhibit strong magnetoelectric (ME) effects near room te...
We report on structural, magnetic, and magnetoelectric (ME) properties of a U-type hexaferrite Sr 4 ...
In the last few decades, multiferroic (MF) materials have attracted interesting attention due to the...
Magnetic, electrical and magnetodielectric properties have been studied in Co-Ti co-doped M-type hex...
By employing resonant X-ray microdiffraction, we image the magnetisation and magnetic polarity domai...
The Co2+and W4+ions (x) doped M-type hexagonal Ba0.5Sr0.5CoxWxFe12−2xO19(x = 0.2, 0.4, 0.6, 0.8 and ...
We report magnetic susceptibility, resistivity, and heat capacity measurements on single crystals of...
M-type hexagonal ferrites with chemical composition Ba0.5Sr0.5CoxAlxFe12−2xO19(x = 0.0, 0.2, 0.4, 0....
Ba2Mg0.4Co1.6Fe12O22 was prepared in powder form by sonochemical co-precipitation and examined by X-...