Untrained physically informed neural network for image reconstruction of magnetic field sources
arXiv:2207.13720 · doi:10.1103/PhysRevApplied.18.064076
Abstract
Predicting measurement outcomes from an underlying structure often follows directly from fundamental physical principles. However, a fundamental challenge is posed when trying to solve the inverse problem of inferring the underlying source-configuration based on measurement data. A key difficulty arises from the fact that such reconstructions often involve ill-posed transformations and that they are prone to numerical artefacts. Here, we develop a numerically efficient method to tackle this inverse problem for the reconstruction of magnetisation maps from measured magnetic stray field images. Our method is based on neural networks with physically inferred loss functions to efficiently eliminate common numerical artefacts. We report on a significant improvement in reconstruction over traditional methods and we show that our approach is robust to different magnetisation directions, both in- and out-of-plane, and to variations of the magnetic field measurement axis orientation. While we showcase the performance of our method using magnetometry with Nitrogen Vacancy centre spins in diamond, our neural-network-based approach to solving inverse problems is agnostic to the measurement technique and thus is applicable beyond the specific use-case demonstrated in this work.
11 pages, 6 figures
References in corpus (4)
- Probing magnetism in 2D materials at the nanoscale with single spin microscopy
- Imaging phonon-mediated hydrodynamic flow in WTe2
- Improved current density and magnetisation reconstruction through vector magnetic field measurements
- Varied magnetic phases in a van der Waals easy-plane antiferromagnet revealed by nitrogen-vacancy center microscopy
Cited by in corpus (7)
- Nanoscale magnetism and magnetic phase transitions in atomically thin CrSBr
- Machine Learning Microscopic Form of Nematic Order in twisted double-bilayer graphene
- A puzzling insensitivity of magnon spin diffusion to the presence of 180 domain walls in a ferrimagnetic insulator
- Antiferromagnetic nanoscale bit arrays of magnetoelectric CrO thin films
- Universal Reconstruction of Complex Magnetic Profiles with Minimum Prior Assumptions
- Visualizing isospin magnetic texture and intervalley exchange interaction in rhombohedral tetralayer graphene
- Prediction of the Hubbard U parameter from scanning tunneling microscopy images of moire systems using image recognition