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      Nature of the glassy magnetic state in Cu\(_{2.84}\)Mn\(_{0.44}\)Al\(_{0.72}\) shape memory alloy

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          Abstract

          The magnetic ground state of the ferromagnetic shape memory alloy of nominal composition Cu\(_{2.84}\)Mn\(_{0.44}\)Al\(_{0.72}\) was investigated. The sample shows reentry of a glassy magnetic phase below the martensitic transition temperature, which is found to have complex character with two distinct anomalies in the temperature dependent ac susceptibility data. The sample retains its glassy phase even below the second transition as evident from the magnetic memory measurements in different protocols. Existence of two transitions along with their observed nature suggest that the system can be described by the mean field Heisenberg model of reentrant spin glass as proposed by Gabay and Toulous. \cite{rsg-GT1} The sample provides a fascinating example where a Gabay-Toulous type spin glass state is triggered by a first order magneto-structural transition.

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          Criterion for Ferromagnetism from Observations of Magnetic Isotherms

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            Critical slowing down in spin glasses and other glasses: Fulcher versus power law

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              Spin-glass transition in single-crystal\(\mathrm{Bi}\mathrm{Fe}{\mathrm{O}}_{3}\)

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                Author and article information

                Journal
                24 July 2013
                Article
                10.1209/0295-5075/104/47014
                1307.6310
                1ca3e0db-a3d9-4199-bed4-c91672c5de51

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                cond-mat.str-el cond-mat.mtrl-sci

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