paper

Magnetocrystalline Anisotropy and Magnetocaloric Effect Studies on the Room-temperature 2D Ferromagnetic CrTe

arXiv:2209.08477

Abstract

We present a thorough study on the magnetoanisotropic properties and magnetocaloric effect in the layered ferromagnetic CrTe single crystals by performing the critical behaviour analysis of magnetization isotherms. The critical exponents =0.485(3), =1.202(5), and =3.52(3) with a Curie temperature of K are determined by the modified Arrott plots. We observe a large magnetocrystalline anisotropy K=330 kJ/ at 3 K which gradually decreases with increasing temperature. Maximum entropy change - and the relative cooling power (RCP) are found to be 2.77 and 88.29 , respectively near when the magnetic field applied parallel to -plane. Rescaled - data measured at various temperatures and fields collapse into a single universal curve, confirming the second order magnetic transition in this system. Following the renormalization group theory analysis, we find that the spin-coupling is of 3D Heisenberg-type, , with long-range exchange interactions decaying as .

10 pages, 7 figures