B-site spin-state and anti-site disorder driven multiple-magnetic phases: Griffiths phase, re-entrant cluster glass and exchange bias in double perovskite Pr$_2$CoFeO$_6$
Arkadeb Pal, P. Singh, Shiv Kumar, S. Ghosh, Sudip Kumar Saha,, Manoranjan Kumar, Amitabh Das, Eike F. Schwier, Masahiro Sawada, Kenya, Shimada, A. K. Ghosh, Sandip Chatterjee

TL;DR
This study investigates the complex magnetic phases of Pr2CoFeO6, revealing how B-site disorder and spin states lead to multiple magnetic phenomena including Griffiths phase, cluster glass, and exchange bias.
Contribution
It provides a comprehensive experimental and theoretical analysis of how anti-site disorder and spin states drive multiple magnetic phases in Pr2CoFeO6, a double perovskite.
Findings
Identified long-range antiferromagnetic order below 269 K.
Confirmed Griffiths phase and re-entrant cluster glass at low temperatures.
Discovered the role of B-site disorder and spin states in magnetic behavior.
Abstract
We report the comprehensive experimental results identifying the magnetic spin ordering and the magnetization dynamics of a double perovskite Pr2CoFeO6 by employing the (dc and ac) magnetization, powder neutron diffraction (NPD) and X-ray magnetic circular dichroism (XMCD) techniques. X-ray diffraction and neutron diffraction studies revealed that Pr2CoFeO6 adopts a B-site disordered orthorhombic structure with space group Pnma. Additionally, ab initio band structure calculations performed on this system suggested an insulating anti-ferromagnetic (Fe-Fe) ground state. Magnetometry study showed the system to possess a spectrum of interesting magnetic phases including long range antiferromagnetic (canted) spin ordering (TN ~269 K), Griffiths phase, re-entrant cluster glass (RCG) (TG~ 34 K) and exchange bias. However, the NPD study divulged the exhibition of a long range G-type (below TN…
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