Revealing magnetic and physical properties of TbFe4.4Al7.6: experiment and theory

S. Shanmukharao Samatham,Saurabh Singh, S. Shravan Kumar Reddy, Santhosh A. Kumar, Sankararao Yadam,P. D. Babu,Tsunehiro Takeuchi,K. G. Suresh

JOURNAL OF PHYSICS-CONDENSED MATTER(2024)

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摘要
We report on the magnetic, electrical transport, caloric and electronic structure properties of TbFe4.4Al7.6 polycrystalline alloy using experiment and theory. The alloy crystallizes in tetragonal structure with I4/mmm space group with lattice parameters a = b = 8.7234(5) & Aring; and c = 5.0387(6) & Aring;. It is ferrimagnetic with a compensation temperature of 151 K, Curie-Weiss temperature 172.11 K and an effective magnetic moment = (2.37 +/- 0.07) /f.u with Z = 2. At low temperatures, kinetic arrest-like first-order phase transition is realized through the thermal hysteresis between field-cooled cooling and field-cooled warming curves of M(T) and virgin curves of M(H) and which are outside the hysteresis loops with metamagnetic transition. The high magnetic field suppression of multiple transitions and reduced coercive field and remnant magnetization with increasing temperature are reported. and cease to exist above the compensation temperature . A correlation between the isothermal magnetization and resistivity is discussed. Specific heat C(T) analysis reveals a Sommerfeld parameter of gamma = 0.098 and a Debye temperature of K. The sample is metallic as inferred from the behavior and Sommerfeld parameter. The magnetoresistance of the alloy is low and negative which indicates the suppression of weak spin-fluctuations. This alloy avoids the tricritical point despite first-to-second order phase transition. The electronic and magnetic structure calculations, by making use of full potential linearized augmented plane wave method, suggest metallic ferrimagnetic ground state of TbFe4.4Al7.6 with Tb atoms contributing ferromagnetically (5.87 ) and Fe atoms with antiferromagnetic contribution (2.67 ), in close agreement with the experimental observation.
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关键词
ferrimagnetism,kinetic arrest,first order phase transition,first principle calculations,magnetoresistance
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