Induced magnetic ordering in alloyed compounds based on Pauli paramagnet YCo$_2$

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Śniadecki, Z., Werwiński, M., Szajek, A., Rößler, U. K., Idzikowski, B.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909545357377536
author Śniadecki, Z.
Werwiński, M.
Szajek, A.
Rößler, U. K.
Idzikowski, B.
author_facet Śniadecki, Z.
Werwiński, M.
Szajek, A.
Rößler, U. K.
Idzikowski, B.
contents Intermetallic YCo$_2$ compound is a Pauli exchange-enhanced paramagnet. Structural and magnetic properties of rapidly quenched YCo$_2$ and YCo$_2$ alloyed with Nb or Ti are presented. Samples produced by melt spinning have been characterized by X-ray diffraction (XRD) and vibrating sample magnetometry (VSM). The samples crystallize in MgCu$_2$-type phase with lattice constant a changing from 7.223 A for YCo$_2$, through 7.213 A for Y$_{0.9}$Nb$_{0.1}$Co$_2$ to 7.192 A for Y$_{0.9}$Ti$_{0.1}$Co$_2$, where Y atoms are replaced by Nb or Ti atoms. Nanocrystalline phases can be produced by appropriate cooling rates for the solidification process. By the synthesis process free volumes, vacancies, and alloyed atoms are introduced into the YCo$_2$ intermetallic. Ab-initio calculations have been performed to investigate the effects of substitution on the spin-split electronic band structure in the ordered YCo$_2$. A ferrimagnetic ground state is found in the alloyed systems with substitution on the Y-site which is energetically favorable compared to point defects on Co-sites. However, the experimentally found increased magnetic ordering in alloyed YCo$_2$ appears to be based on microstructure effects.
format Preprint
id arxiv_https___arxiv_org_abs_2503_15913
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Induced magnetic ordering in alloyed compounds based on Pauli paramagnet YCo$_2$
Śniadecki, Z.
Werwiński, M.
Szajek, A.
Rößler, U. K.
Idzikowski, B.
Materials Science
Applied Physics
Intermetallic YCo$_2$ compound is a Pauli exchange-enhanced paramagnet. Structural and magnetic properties of rapidly quenched YCo$_2$ and YCo$_2$ alloyed with Nb or Ti are presented. Samples produced by melt spinning have been characterized by X-ray diffraction (XRD) and vibrating sample magnetometry (VSM). The samples crystallize in MgCu$_2$-type phase with lattice constant a changing from 7.223 A for YCo$_2$, through 7.213 A for Y$_{0.9}$Nb$_{0.1}$Co$_2$ to 7.192 A for Y$_{0.9}$Ti$_{0.1}$Co$_2$, where Y atoms are replaced by Nb or Ti atoms. Nanocrystalline phases can be produced by appropriate cooling rates for the solidification process. By the synthesis process free volumes, vacancies, and alloyed atoms are introduced into the YCo$_2$ intermetallic. Ab-initio calculations have been performed to investigate the effects of substitution on the spin-split electronic band structure in the ordered YCo$_2$. A ferrimagnetic ground state is found in the alloyed systems with substitution on the Y-site which is energetically favorable compared to point defects on Co-sites. However, the experimentally found increased magnetic ordering in alloyed YCo$_2$ appears to be based on microstructure effects.
title Induced magnetic ordering in alloyed compounds based on Pauli paramagnet YCo$_2$
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2503.15913