Field induced crossover in critical behaviour and direct measurement of the magnetocaloric properties of La0.4Pr0.3Ca0.1Sr0.2MnO3
Sagar Ghorai, Ridha Skini, Daniel Hedlund, Petter Strom, and Peter, Svedlindh

TL;DR
This study investigates La0.4Pr0.3Ca0.1Sr0.2MnO3's magnetic transition and magnetocaloric properties, revealing a field-induced crossover in critical behaviour and promising features for room temperature magnetic refrigeration.
Contribution
It provides the first detailed analysis of the field-induced crossover in critical behaviour and direct magnetocaloric measurements of La0.4Pr0.3Ca0.1Sr0.2MnO3.
Findings
Second-order magnetic transition near 289 K
Field-induced crossover in critical behaviour
Significant magnetocaloric effect with 1.5 K temperature change
Abstract
La0.4Pr0.3Ca0.1Sr0.2MnO3 has been investigated as a potential candidate for room temperature magnetic refrigeration. Results from X-ray powder diffraction reveal an orthorhombic structure with Pnma space group. The electronic and chemical properties have been confirmed by X-ray photoelectron spectroscopy and ion-beam analysis. A second-order paramagnetic to ferromagnetic transition was observed near room temperature (289 K), with a mean-field like critical behaviour at low field and a tricritical mean-field like behaviour at high field. The field induced crossover in critical behaviour is a consequence of the system being close to a first-order magnetic transition in combination with a magnetic field induced suppression of local lattice distortions. The lattice distortions consist of interconnected and weakly distorted pairs of Mn-ions, where each pair shares an electron and a hole,…
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