Quasi-2D-Ising-type magnetic critical behavior in trigonal Cr1.27Te2

Author:

Goswami Anirban1ORCID,Ng Nicholas23,Yakubu Emmanuel1,Bassen Gregory23ORCID,Guchhait Samaresh1ORCID

Affiliation:

1. Department of Physics and Astronomy, Howard University 1 , Washington, District of Columbia 20059, USA

2. Department of Chemistry, The Johns Hopkins University 2 , Baltimore, Maryland 21218, USA

3. Institute for Quantum Matter, The William H. Miller III Department of Physics and Astronomy, The Johns Hopkins University 3 , Baltimore, Maryland 21218, USA

Abstract

Single crystal Cr1.27Te2 samples were synthesized by using the chemical vapor transport method. Single crystal x-ray diffraction studies show a trigonal crystal structure with a P3̄m1 symmetry space group. We then systematically investigate magnetic properties and critical behaviors of single crystal Cr1.27Te2 around its paramagnetic-to-ferromagnetic phase transition. The Arrott plot indicates a second-order magnetic phase transition. We estimate critical exponents β = 0.2631 ± 0.002, γ = 1.2314 ± 0.007, and TC = 168.48 ± 0.031 K by using the Kouvel–Fisher method. We also estimate other critical exponents δ = 5.31 ± 0.004 by analyzing the critical isotherm at TC = 168.5 K. We further verify the accuracy of our estimated critical exponents by the scaling analysis. Further analysis suggests that Cr1.27Te2 can be best described as a quasi-2D Ising magnetic system.

Funder

National Science Foundation

Publisher

AIP Publishing

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