A first-order magnetic phase transition near 15 K with novel magnetic-field-induced effects in Er5Si3

Mohapatra, Niharika ; Mukherjee, K. ; Iyer, Kartik K. ; Sampathkumaran, E. V. (2011) A first-order magnetic phase transition near 15 K with novel magnetic-field-induced effects in Er5Si3 Journal of Physics: Condensed Matter, 23 (49). 496001_1-496001_5. ISSN 0953-8984

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Official URL: http://iopscience.iop.org/0953-8984/23/49/496001

Related URL: http://dx.doi.org/10.1088/0953-8984/23/49/496001

Abstract

We present magnetic characterization of a binary rare-earth intermetallic compound Er5Si3, crystallizing in Mn5Si3-type hexagonal structure, through magnetization, heat capacity, electrical resistivity and magnetoresistance measurements. Our investigations confirm that the compound exhibits two magnetic transitions with decreasing temperature, the first one at 35 K and the second one at 15 K. The present results reveal that the second magnetic transition is a disorder-broadened first-order transition, as shown by thermal hysteresis in the measured data. Another important finding is that, below 15 K, there is a magnetic-field-induced transition with a hysteretic effect with the electrical resistance getting unusually enhanced at this transition and the magnetoresistance is found to exhibit intriguing magnetic-field dependence, indicating novel magnetic phase coexistence phenomenon. It thus appears that this compound is characterized by interesting magnetic anomalies in the temperature-magnetic-field phase diagram.

Item Type:Article
Source:Copyright of this article belongs to Institute of Physics.
ID Code:92917
Deposited On:06 Jun 2012 13:51
Last Modified:19 May 2016 06:09

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