Magnetic anomalies in nanocrystalline Ca3CoRhO6, a geometrically frustrated spin-chain compound

Mohapatra, Niharika ; Iyer, Kartik K. ; Chalke, B. A. ; Sampathkumaran, E. V. (2009) Magnetic anomalies in nanocrystalline Ca3CoRhO6, a geometrically frustrated spin-chain compound Solid State Communications, 149 (39-40). pp. 1641-1645. ISSN 0038-1098

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Official URL: http://linkinghub.elsevier.com/retrieve/pii/S00381...

Related URL: http://dx.doi.org/10.1016/j.ssc.2009.06.026

Abstract

We have investigated the magnetic behavior of nano crystals, synthesized by high-energy ball-milling, for a well-known geometrically frustrated spin-chain system, Ca3CoRhO6, and compared its magnetic characteristics with those of the bulk form by measuring ac and dc magnetization. The features attributable to the onset of 'partially disordered antiferromagnetism' (characterizing the bulk form) are not seen in the magnetization data of the nano particles; the magnetic moment at high fields in the very low temperature range in the magnetically ordered state gets relatively enhanced in the nano particles. It appears that the ferromagnetic intrachain interaction, judged by the sign of the paramagnetic Curie temperature, is preserved in the nano particles. These trends are opposite to those seen in the nano particles of Ca3Co2O6. However, the complex spin-dynamics as evidenced by large frequency dependence of ac susceptibility is retained in the nano particles as well. Thus, there are some similarities and dissimilarities between the properties of the nano particles and those of the bulk. We believe that these findings will be useful to understand correlation lengths deciding various properties of geometrical frustration and/or spin-chain phenomena.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:A. Geometrically Frustrated Oxides; A. Nanomaterials; A. Magnetically Ordered Materials; C. Phase Transitions
ID Code:47343
Deposited On:11 Jul 2011 05:47
Last Modified:11 Jul 2011 05:47

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