EPR studies on single crystals of
β Scribed by B. Padmanabhan; Ajay Sharma; S.S. Rao; Suja Elizabeth; H.L. Bhat; S.V. Bhat
- Publisher
- Elsevier Science
- Year
- 2007
- Tongue
- English
- Weight
- 420 KB
- Volume
- 398
- Category
- Article
- ISSN
- 0921-4526
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β¦ Synopsis
Electron paramagnetic resonance (EPR) studies are carried out on single crystals of Pr 1Γx Pb x MnO 3 , for x ΒΌ 0:23 and 0.30. The crystal with x ΒΌ 0:23 undergoes a transition from paramagnetic insulator to ferromagnetic insulator with Curie temperature T C $167 K. The crystal with x ΒΌ 0:30 undergoes a transition from paramagnetic insulator to ferromagnetic metal with T C $200 K. The EPR analysis is carried out in the paramagnetic region for both the crystals. The EPR signals are fitted to the Dysonian equation. Linewidth, intensity and asymmetry parameters are plotted as a function of temperature down to T C . The intensity shows a simple Curie-Weiss behaviour. The spin relaxation takes place through a ''bottleneck'' mechanism according to which linewidth depends only on strong exchange interaction between Mn 3ΓΎ and Mn 4ΓΎ ions. Around 240 K a secondary low field EPR signal is observed for both compositions which persists till around 200 K indicating a possible phase separation.
π SIMILAR VOLUMES
Single crystal electron paramagnetic resonance studies on VO(II) doped cadmium ammonium phosphate hexahydrate were carried out at room temperature. The paramagnetic impurity VO(II) was found to enter the host lattice both substitutionally and interstitially. The spin Hamiltonian parameter values cal