Unveiling Antiferromagnetic Resonance: A Comprehensive Analysis via the Self-Consistent Harmonic Approximation

Fuente: arXiv
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Main Authors: Villela, G. C., Moura, A. R.
Format: Preprint
Published: 2024
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author Villela, G. C.
Moura, A. R.
author_facet Villela, G. C.
Moura, A. R.
contents The Self-Consistent Harmonic Approximation (SCHA) has demonstrated efficacy in discerning phase transitions and, more recently, in elucidating coherent phenomena within ferromagnetic systems. However, a notable gap in understanding arises when extending this framework to antiferromagnetic models. In this investigation, we employ the SCHA formalism to conduct an in-depth exploration of the Antiferromagnetic Resonance (AFMR) within both Antiferromagnetic (AF) and Spin-Flop (SF) phases. Our analysis includes thermodynamic considerations from both semiclassical and quantum perspectives, with comparisons drawn against contemporary experimental and theoretical data. By incorporating a treatment utilizing coherent states, we investigate the dynamics of magnetization precession, a fundamental aspect in comprehending various spintronic experiments. Notably, the SCHA demonstrates excellent agreement with existing literature, showcasing its simplicity and efficiency in describing AFMR characteristics, even close to the transition temperature.
format Preprint
id arxiv_https___arxiv_org_abs_2405_08146
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Unveiling Antiferromagnetic Resonance: A Comprehensive Analysis via the Self-Consistent Harmonic Approximation
Villela, G. C.
Moura, A. R.
Strongly Correlated Electrons
The Self-Consistent Harmonic Approximation (SCHA) has demonstrated efficacy in discerning phase transitions and, more recently, in elucidating coherent phenomena within ferromagnetic systems. However, a notable gap in understanding arises when extending this framework to antiferromagnetic models. In this investigation, we employ the SCHA formalism to conduct an in-depth exploration of the Antiferromagnetic Resonance (AFMR) within both Antiferromagnetic (AF) and Spin-Flop (SF) phases. Our analysis includes thermodynamic considerations from both semiclassical and quantum perspectives, with comparisons drawn against contemporary experimental and theoretical data. By incorporating a treatment utilizing coherent states, we investigate the dynamics of magnetization precession, a fundamental aspect in comprehending various spintronic experiments. Notably, the SCHA demonstrates excellent agreement with existing literature, showcasing its simplicity and efficiency in describing AFMR characteristics, even close to the transition temperature.
title Unveiling Antiferromagnetic Resonance: A Comprehensive Analysis via the Self-Consistent Harmonic Approximation
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2405.08146