A ferromagnetic rare earth (RE) intermatallic can be made to imbible zero magnetization characteristic and display magnetic reorientation phenomenon by letting a RE site be occupied at random by two RE atoms belonging to different halves of 4f series (Gd to be counted alongwith second half) and choosing their fractional compositions appropriately. In recent times, H. Adachi and co-workers drew specific attention to ferromagnetic Sm based systems, where the net moment can be either ‘orbital surplus’, or ‘spin surplus’ (due to admixture effects) and the zero magnetization state can be obtained by substitution of Sm by the Gd or Nd. We present here a status report of our investigations and describe newer features relate...
Les composés terre rare-métal de transition présentent une large gamme de propriétés tout à fait ori...
Dilute alloys of rare earths have played a vital role in understanding magnetic phenomena. Here, we ...
Dilute alloys of rare earths have played a vital role in understanding magnetic phenomena. Here, we ...
The exchange bias effect-an important attribute in many device applications- is traditionally discus...
Rare earth based intermetallics, SmScGe and NdScGe, are shown to exhibit near-zero net magnetization...
The rare-earth or yttrium (R) – transition metal (M) compounds form closely packed structures which...
It has been empirically known that the coercivity of rare-earth permanent magnets depends on the siz...
The modern families of high performance permanent magnets are based on combinations of transition me...
A ferromagnetic system which has an external magnetization that is intrinsically zero is an interest...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The Curie temperature and saturation magnetization M//s( mu //B/f. u. ) of R//2Fe//1//4B have been d...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
Les composés terre rare-métal de transition présentent une large gamme de propriétés tout à fait ori...
Dilute alloys of rare earths have played a vital role in understanding magnetic phenomena. Here, we ...
Dilute alloys of rare earths have played a vital role in understanding magnetic phenomena. Here, we ...
The exchange bias effect-an important attribute in many device applications- is traditionally discus...
Rare earth based intermetallics, SmScGe and NdScGe, are shown to exhibit near-zero net magnetization...
The rare-earth or yttrium (R) – transition metal (M) compounds form closely packed structures which...
It has been empirically known that the coercivity of rare-earth permanent magnets depends on the siz...
The modern families of high performance permanent magnets are based on combinations of transition me...
A ferromagnetic system which has an external magnetization that is intrinsically zero is an interest...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The Curie temperature and saturation magnetization M//s( mu //B/f. u. ) of R//2Fe//1//4B have been d...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
The large spin-orbit interaction in the lanthanides implies a strong coupling between their internal...
Les composés terre rare-métal de transition présentent une large gamme de propriétés tout à fait ori...
Dilute alloys of rare earths have played a vital role in understanding magnetic phenomena. Here, we ...
Dilute alloys of rare earths have played a vital role in understanding magnetic phenomena. Here, we ...