DOE PAGES title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Magnetic microscopic imaging with an optically pumped magnetometer and flux guides

Journal Article · · Applied Physics Letters
DOI: https://doi.org/10.1063/1.4975069 · OSTI ID:1344366

Here, by combining an optically pumped magnetometer (OPM) with flux guides (FGs) and by installing a sample platform on automated translation stages, we have implemented an ultra-sensitive FG-OPM scanning magnetic imaging system that is capable of detecting magnetic fields of ~20 pT with spatial resolution better than 300 μm (expected to reach ~10 pT sensitivity and ~100 μm spatial resolution with optimized FGs). As a demonstration of one possible application of the FG-OPM device, we conducted magnetic imaging of micron-size magnetic particles. Magnetic imaging of such particles, including nano-particles and clusters, is very important for many fields, especially for medical cancer diagnostics and biophysics applications. For rapid, precise magnetic imaging, we constructed an automatic scanning system, which holds and moves a target sample containing magnetic particles at a given stand-off distance from the FG tips. We show that the device was able to produce clear microscopic magnetic images of 10 μm-size magnetic particles. In addition, we also numerically investigated how the magnetic flux from a target sample at a given stand-off distance is transmitted to the OPM vapor cell.

Research Organization:
Los Alamos National Laboratory (LANL)
Sponsoring Organization:
LDRD; USDOE
Grant/Contract Number:
AC52-06NA25396
OSTI ID:
1344366
Report Number(s):
LA-UR-16-28672
Journal Information:
Applied Physics Letters, Journal Name: Applied Physics Letters Journal Issue: 4 Vol. 110; ISSN 0003-6951
Publisher:
American Institute of Physics (AIP)Copyright Statement
Country of Publication:
United States
Language:
English

References (11)

Magnetic relaxometry with an atomic magnetometer and SQUID sensors on targeted cancer cells journal August 2012
Permanent Magnet Materials and their Application book January 2012
A subfemtotesla multichannel atomic magnetometer journal April 2003
Optical magnetometry journal April 2007
Ultra-sensitive Magnetic Microscopy with an Optically Pumped Magnetometer journal April 2016
Non-invasive detection of animal nerve impulses with an atomic magnetometer operating near quantum limited sensitivity journal July 2016
The “Shim-a-ring” magnet: Configurable static magnetic fields using a ring magnet with a concentric ferromagnetic shim journal May 2013
New experimental limit on the electric dipole moment of the electron in a paramagnetic insulator journal May 2015
Search for exotic spin-dependent interactions with a spin-exchange relaxation-free magnetometer journal August 2016
Development of a SQUID-Based ${}^{3}\hbox{He}$ Co-Magnetometer Readout for a Neutron Electric Dipole Moment Experiment journal June 2013
Optical brain imaging in vivo: techniques and applications from animal to man journal January 2007

Cited By (3)

Measurement of the spatial magnetic field distribution in a single large spin-exchange relaxation-free vapor cell journal January 2019
Nondestructive in-line sub-picomolar detection of magnetic nanoparticles in flowing complex fluids journal February 2018
Nondestructive in-line sub-picomolar detection of magnetic nanoparticles in flowing complex fluids text January 2018

Similar Records

Ultra-sensitive magnetic microscopy with an optically pumped magnetometer
Journal Article · Fri Apr 22 00:00:00 EDT 2016 · Scientific Reports · OSTI ID:1291225

Scanning Quantum Cryogenic Atom Microscope
Journal Article · Mon Mar 27 00:00:00 EDT 2017 · Physical Review Applied · OSTI ID:1535760

High-sensitivity operation of single-beam optically pumped magnetometer in a kHz frequency range
Journal Article · Wed Feb 01 23:00:00 EST 2017 · Measurement Science and Technology · OSTI ID:1344356