Comparative study of magnetic ordering in bulk and nanoparticles of Sm0.65Ca0.35MnO3: Magnetization and electron magnetic resonance measurements


Autoria(s): Goveas, Lora Rita; Anuradha, KN; Bhagyashree, KS; Bhat, SV
Data(s)

2015

Resumo

To explore the effect of size reduction to nanoscale on the hole doped Sm0.65Ca0.35MnO3 compound, dc magnetic measurements and electron magnetic resonance (EMR) were done on bulk and nanoparticle samples in the temperature range 10 <= T <= 300 K. Magnetization measurement showed that the bulk sample undergoes a charge ordering transition at 240K and shows a mixed magnetic phase at low temperature. However, the nanosample underwent a ferromagnetic transition at 75 K, and the charge ordered state was destabilized on size reduction down to nanoscale. The low-temperature ferromagnetic component is found to be enhanced in nanoparticles as compared to their bulk counterpart. Interestingly around room temperature, bulk particles show higher magnetization where as at low temperature nanoparticles show higher magnetization. Ferromagnetism in the bulk is due to super exchange where as ferromagnetism in nanoparticles is due to uncompensated spins of the surface layer. Temperature variation of EMR parameters correlates well with the results of magnetic measurements. The magnetic behaviour of the nanoparticles is understood in terms of the core shell scenario. (C) 2015 AIP Publishing LLC.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/51774/1/Jou_of_App_Phy_117-17_17E111_2015.pdf

Goveas, Lora Rita and Anuradha, KN and Bhagyashree, KS and Bhat, SV (2015) Comparative study of magnetic ordering in bulk and nanoparticles of Sm0.65Ca0.35MnO3: Magnetization and electron magnetic resonance measurements. In: JOURNAL OF APPLIED PHYSICS, 117 (17).

Publicador

AMER INST PHYSICS

Relação

http://dx.doi.org/ 10.1063/1.4913722

http://eprints.iisc.ernet.in/51774/

Palavras-Chave #Physics
Tipo

Journal Article

PeerReviewed