Javascript must be enabled to continue!
Crystal-chirality-dependent control of magnetic domains in a time-reversal-broken antiferromagnet
View through CrossRef
AbstractChiral-lattice magnets can exhibit a variety of physical phenomena when time-reversal symmetry is broken by their magnetism. For example, nonreciprocal responses of (quasi)particles have been widely observed in chiral-lattice magnets with macroscopic magnetization. Meanwhile, time-reversal symmetry can also be broken in antiferromagnets without magnetization. Here we report an unconventional chirality-magnetism coupling in a chiral-lattice antiferromagnet Pb(TiO)Cu4(PO4)4 whose time-reversal symmetry is broken by an ordering of magnetic quadrupoles. Our experiments demonstrate that a sign of magnetic quadrupoles is controllable by a magnetic field only, which is generally impossible in consideration of the symmetry of magnetic quadrupoles. Furthermore, we find that the sign of magnetic quadrupoles stabilized by applying a magnetic field is reversed by a switching of the chirality. Our theoretical calculations and phenomenological approach reveal that this unusual coupling between the chirality and magnetic quadrupoles is mediated by the previously-unrecognized magnetic octupoles that emerge due to the chirality.
Springer Science and Business Media LLC
Title: Crystal-chirality-dependent control of magnetic domains in a time-reversal-broken antiferromagnet
Description:
AbstractChiral-lattice magnets can exhibit a variety of physical phenomena when time-reversal symmetry is broken by their magnetism.
For example, nonreciprocal responses of (quasi)particles have been widely observed in chiral-lattice magnets with macroscopic magnetization.
Meanwhile, time-reversal symmetry can also be broken in antiferromagnets without magnetization.
Here we report an unconventional chirality-magnetism coupling in a chiral-lattice antiferromagnet Pb(TiO)Cu4(PO4)4 whose time-reversal symmetry is broken by an ordering of magnetic quadrupoles.
Our experiments demonstrate that a sign of magnetic quadrupoles is controllable by a magnetic field only, which is generally impossible in consideration of the symmetry of magnetic quadrupoles.
Furthermore, we find that the sign of magnetic quadrupoles stabilized by applying a magnetic field is reversed by a switching of the chirality.
Our theoretical calculations and phenomenological approach reveal that this unusual coupling between the chirality and magnetic quadrupoles is mediated by the previously-unrecognized magnetic octupoles that emerge due to the chirality.
Related Results
From Market to Portfolio Chirality
From Market to Portfolio Chirality
<p><span>In a companion paper (Ambarish, Kreuser and Seigel, 2026 — hereafter AKS-I) we established that financial markets are intrinsically chiral: the implied volatil...
Quantitative Structure–Activity Relationship (QSAR) Modeling of Chiral CCR2 Antagonists with a Multidimensional Space of Novel Chirality Descriptors
Quantitative Structure–Activity Relationship (QSAR) Modeling of Chiral CCR2 Antagonists with a Multidimensional Space of Novel Chirality Descriptors
The development of chirality descriptors for quantitative chirality structure–activity relationship (QCSAR) modeling has always attracted attention, owing to the importance of chir...
Model of Spin-Tunnel Junction Magnetization Reversal with Synthetic Antiferromagnet
Model of Spin-Tunnel Junction Magnetization Reversal with Synthetic Antiferromagnet
The aim of this study is to develop a theoretical model of magnetization switching in spin-tunnel junctions that will enable evaluation of the magnetoresistance dependence in nanos...
Functional Chirality: From Small Molecules to Supramolecular Assemblies
Functional Chirality: From Small Molecules to Supramolecular Assemblies
Many structures in nature look symmetric, but this is not completely accurate, because absolute symmetry is close to death. Chirality (handedness) is one form of living asymmetry. ...
Magnetic cloak made of NdFeB permanent magnetic material
Magnetic cloak made of NdFeB permanent magnetic material
In the past few years, the concept of an electromagnetic invisibility cloak has received much attention. Based on the pioneering theoretical work, invisibility cloaks have been gre...
Magnetic chirality
Magnetic chirality
AbstractChirality with all broken mirror symmetries matters ubiquitously from DNA functionality, vine climbing, to the piezoelectricity of quartz crystals. Magnetic chirality means...
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...
Analysis of magnetohydrodynamic drag character for hypersonic vehicles
Analysis of magnetohydrodynamic drag character for hypersonic vehicles
In hypersonic flight, a very high temperature area can form ahead of the nose of aerocraft due to the shock aerodynamic heating, which leads to air weakly ionized. Many researchers...

