Spin dynamics in natural multiferroic pyroxene NaFeSi$_2$O$_6$

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Prokhnenko, Oleksandr, Nikitin, Stanislav E., Kaneko, Koji, Tabata, Chihiro, Hirose, Yusuke, Tokiwa, Yoshifumi, Haga, Yoshinori, Fujita, Masaki, Nojiri, Hiroyuki, Anovitz, Lawrence M., Podlesnyak, Andrey
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914024369684480
author Prokhnenko, Oleksandr
Nikitin, Stanislav E.
Kaneko, Koji
Tabata, Chihiro
Hirose, Yusuke
Tokiwa, Yoshifumi
Haga, Yoshinori
Fujita, Masaki
Nojiri, Hiroyuki
Anovitz, Lawrence M.
Podlesnyak, Andrey
author_facet Prokhnenko, Oleksandr
Nikitin, Stanislav E.
Kaneko, Koji
Tabata, Chihiro
Hirose, Yusuke
Tokiwa, Yoshifumi
Haga, Yoshinori
Fujita, Masaki
Nojiri, Hiroyuki
Anovitz, Lawrence M.
Podlesnyak, Andrey
contents Spin dynamics in the natural mineral aegirine, NaFeSi$_2$O$_6$, a member of the pyroxene family, was studied by elastic and inelastic neutron scattering. Magnetization and specific heat measurements as well as single-crystal neutron diffraction maps, taken in the temperature range 2 - 20 K, confirm two successive magnetic transitions at 8.8 and 5.8 K, consistent with previous studies. The observed spin-wave excitations emerge from the incommensurate magnetic Bragg peaks corresponding to the propagation vector $k_{\rm ICM} = (0, 0.77, 0)$, and extend up to energies of about 1.5 meV. In the low-temperature helical phase, the spin dynamics of the Fe$^{3+}$ ions is well described by a simple linear spin-wave model. The observed excitations can be modeled using a spin Hamiltonian that includes three primary exchange interactions - intrachain coupling $J=0.142(2)$ meV, interchain couplings $J_1=0.083(1)$ meV and $J_2=0.186(1)$ meV - and an easy-plane anisotropy $D=0.020(6)$ meV. Our results show that no single exchange interaction dominates the spin dynamics. The similar strengths of the intrachain and interchain couplings point to the fact that the magnetic interactions in aegirine are three-dimensional rather than confined along one direction. As a result, the system cannot be considered quasi-one-dimensional, as previously suggested, and calls for further investigations.
format Preprint
id arxiv_https___arxiv_org_abs_2509_05251
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spin dynamics in natural multiferroic pyroxene NaFeSi$_2$O$_6$
Prokhnenko, Oleksandr
Nikitin, Stanislav E.
Kaneko, Koji
Tabata, Chihiro
Hirose, Yusuke
Tokiwa, Yoshifumi
Haga, Yoshinori
Fujita, Masaki
Nojiri, Hiroyuki
Anovitz, Lawrence M.
Podlesnyak, Andrey
Strongly Correlated Electrons
Spin dynamics in the natural mineral aegirine, NaFeSi$_2$O$_6$, a member of the pyroxene family, was studied by elastic and inelastic neutron scattering. Magnetization and specific heat measurements as well as single-crystal neutron diffraction maps, taken in the temperature range 2 - 20 K, confirm two successive magnetic transitions at 8.8 and 5.8 K, consistent with previous studies. The observed spin-wave excitations emerge from the incommensurate magnetic Bragg peaks corresponding to the propagation vector $k_{\rm ICM} = (0, 0.77, 0)$, and extend up to energies of about 1.5 meV. In the low-temperature helical phase, the spin dynamics of the Fe$^{3+}$ ions is well described by a simple linear spin-wave model. The observed excitations can be modeled using a spin Hamiltonian that includes three primary exchange interactions - intrachain coupling $J=0.142(2)$ meV, interchain couplings $J_1=0.083(1)$ meV and $J_2=0.186(1)$ meV - and an easy-plane anisotropy $D=0.020(6)$ meV. Our results show that no single exchange interaction dominates the spin dynamics. The similar strengths of the intrachain and interchain couplings point to the fact that the magnetic interactions in aegirine are three-dimensional rather than confined along one direction. As a result, the system cannot be considered quasi-one-dimensional, as previously suggested, and calls for further investigations.
title Spin dynamics in natural multiferroic pyroxene NaFeSi$_2$O$_6$
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2509.05251