The study of the paleomagnetic signal recorded by rocks allows scientists to understand Earth’s past magnetic field and the formation of the geodynamo. The magnetic recording fidelity of this signal is dependent on the magnetic domain state it adopts. The most prevalent example found in nature is the pseudo–single-domain (PSD) structure, yet its recording fidelity is poorly understood. Here, the thermoremanent behavior of PSD magnetite (Fe3O4) particles, which dominate the magnetic signatures of many rock lithologies, is investigated using electron holography. This study provides spatially resolved magnetic information from individual Fe3O4 grains as a function of temperature, which has been previously inaccessible. A small exemplar Fe3O4 g...
A suite of near-identical magnetite nanodot samples produced by electron-beam lithography have been ...
The production of a synthetic basalt comprising Fe3O4 grains (~ 50 nm to ~ 500 nm), via a glass cera...
Interpretation of palaeointensity measurements is difficult since natural samples are made up of mag...
The study of the paleomagnetic signal recorded by rocks allows scientists to understand Earth’s past...
The study of the paleomagnetic signal recorded by rocks allows scientists to understand Earth’s past...
The study of the palaeomagnetic signal recorded by rocks allows scientists to understand the Earth’s...
The study of the paleomagnetic signal recorded by rocks allows scientists to understand Earth’s past...
The thermomagnetic behavior of remanence-induced magnetite (Fe3O4) particles in the pseudo-single-do...
The thermomagnetic behavior of remanence-induced magnetite (Fe3O4) particles in the pseudo-single-do...
The thermal demagnetization of pseudo-single-domain (PSD) magnetite (Fe3O4) particles, which govern ...
The thermal demagnetization of pseudo-single-domain (PSD) magnetite (Fe3O4) particles, which govern ...
The thermal demagnetization of pseudo-single-domain (PSD) magnetite (Fe3O4) particles, which govern ...
Magnetite (Fe3O4) is an important magnetic mineral to Earth scientists, as it carries the dominant m...
A synthetic basalt comprising magnetic Fe3O4 grains (~ 50 nm to ~ 500 nm in diameter) is investigate...
A synthetic basalt comprising magnetic Fe3O4 grains (~ 50 nm to ~ 500 nm in diameter) is investigat...
A suite of near-identical magnetite nanodot samples produced by electron-beam lithography have been ...
The production of a synthetic basalt comprising Fe3O4 grains (~ 50 nm to ~ 500 nm), via a glass cera...
Interpretation of palaeointensity measurements is difficult since natural samples are made up of mag...
The study of the paleomagnetic signal recorded by rocks allows scientists to understand Earth’s past...
The study of the paleomagnetic signal recorded by rocks allows scientists to understand Earth’s past...
The study of the palaeomagnetic signal recorded by rocks allows scientists to understand the Earth’s...
The study of the paleomagnetic signal recorded by rocks allows scientists to understand Earth’s past...
The thermomagnetic behavior of remanence-induced magnetite (Fe3O4) particles in the pseudo-single-do...
The thermomagnetic behavior of remanence-induced magnetite (Fe3O4) particles in the pseudo-single-do...
The thermal demagnetization of pseudo-single-domain (PSD) magnetite (Fe3O4) particles, which govern ...
The thermal demagnetization of pseudo-single-domain (PSD) magnetite (Fe3O4) particles, which govern ...
The thermal demagnetization of pseudo-single-domain (PSD) magnetite (Fe3O4) particles, which govern ...
Magnetite (Fe3O4) is an important magnetic mineral to Earth scientists, as it carries the dominant m...
A synthetic basalt comprising magnetic Fe3O4 grains (~ 50 nm to ~ 500 nm in diameter) is investigate...
A synthetic basalt comprising magnetic Fe3O4 grains (~ 50 nm to ~ 500 nm in diameter) is investigat...
A suite of near-identical magnetite nanodot samples produced by electron-beam lithography have been ...
The production of a synthetic basalt comprising Fe3O4 grains (~ 50 nm to ~ 500 nm), via a glass cera...
Interpretation of palaeointensity measurements is difficult since natural samples are made up of mag...