Javascript must be enabled to continue!
Visualizing rotation and reversal of the Néel vector through antiferromagnetic trichroism
View through CrossRef
AbstractConventional magnetic memories rely on bistable magnetic states, such as the up and down magnetization states in ferromagnets. Increasing the number of stable magnetic states in each cell, preferably composed of antiferromagnets without stray fields, promises to achieve higher-capacity memories. Thus far, such multi-stable antiferromagnetic states have been extensively studied in conducting systems. Here, we report on a striking optical response in the magnetoelectric collinear antiferromagnet Bi2CuO4, which is an insulating version of the representative spintronic material, CuMnAs, with four stable Néel vector orientations. We find that, due to a magnetoelectric effect in a visible range, which is enhanced by a peculiar local environment of Cu ions, absorption coefficient takes three discrete values depending on an angle between the propagation vector of light and the Néel vector—a phenomenon that we term antiferromagnetic trichroism. Furthermore, using this antiferromagnetic trichroism, we successfully visualize field-driven reversal and rotation of the Néel vector.
Springer Science and Business Media LLC
Title: Visualizing rotation and reversal of the Néel vector through antiferromagnetic trichroism
Description:
AbstractConventional magnetic memories rely on bistable magnetic states, such as the up and down magnetization states in ferromagnets.
Increasing the number of stable magnetic states in each cell, preferably composed of antiferromagnets without stray fields, promises to achieve higher-capacity memories.
Thus far, such multi-stable antiferromagnetic states have been extensively studied in conducting systems.
Here, we report on a striking optical response in the magnetoelectric collinear antiferromagnet Bi2CuO4, which is an insulating version of the representative spintronic material, CuMnAs, with four stable Néel vector orientations.
We find that, due to a magnetoelectric effect in a visible range, which is enhanced by a peculiar local environment of Cu ions, absorption coefficient takes three discrete values depending on an angle between the propagation vector of light and the Néel vector—a phenomenon that we term antiferromagnetic trichroism.
Furthermore, using this antiferromagnetic trichroism, we successfully visualize field-driven reversal and rotation of the Néel vector.
Related Results
Alice Neel
Alice Neel
In this instrumental case study this researcher explores the phenomena of child loss anddeath as exemplified in the case of the artist Alice Neel during her early years 1926-1934. ...
Nonlinear spin dynamics across Néel phase transition in ferromagnetic/antiferromagnetic multilayers
Nonlinear spin dynamics across Néel phase transition in ferromagnetic/antiferromagnetic multilayers
We observe strongly nonlinear spin dynamics in ferromagnetic/antiferromagnetic multilayers, controlled by the number of bilayers in the system, layer thicknesses, and temperature, ...
Serial reversal learning of position discrimination in developing rats
Serial reversal learning of position discrimination in developing rats
AbstractThe current study established a procedure to evaluate the capability of rats on postnatal days (PND) 21, 26, and 30 to perform a spatial serial reversal task using a T‐maze...
Supersymmetry Via EDM (Electric Dipole Moment)
Supersymmetry Via EDM (Electric Dipole Moment)
PRELIMINARY NOTE #1 -
My approach may be called quantum-gravitational. I take "educated guesses", using the present state of scientific knowledge, at what might be revealed by a f...
Sub-Zero Cell Reversal Tolerance in Polymer Electrolyte Membrane Fuel Cells
Sub-Zero Cell Reversal Tolerance in Polymer Electrolyte Membrane Fuel Cells
Polymer electrolyte membrane fuel cells (PEMFCs) have gained considerable attention in recent years for application in electric vehicles, portable devices, and cogeneration systems...
Neural dynamics of reversal learning in the prefrontal cortex and recurrent neural networks
Neural dynamics of reversal learning in the prefrontal cortex and recurrent neural networks
Abstract
In probabilistic reversal learning, the choice option yielding reward at higher probability switches at a random trial. To perform optimally in this task, ...
Prevalence and outcomes of Hartmann’s reversal following Hartmann’s procedure in a regional center, a retrospective cohort study.
Prevalence and outcomes of Hartmann’s reversal following Hartmann’s procedure in a regional center, a retrospective cohort study.
Abstract
Background
Hartmann’s procedure (sigmoid resection with end colostomy) is a commonly performed emergency procedure for diseases of the sigmoid colon.
Aim
To determ...
Impact of aortic root rotation angle on new-onset first-degree atrioventricular block following mitral valve surgery
Impact of aortic root rotation angle on new-onset first-degree atrioventricular block following mitral valve surgery
Abstract
OBJECTIVES
This study aimed to classify anatomical variations in aortic root rotation using preoperative three-dimensio...

