© 2017 The Authors Many geodynamo models predict an inverse relationship between geomagnetic reversal frequency and field strength. However, most of the absolute paleointensity data, obtained predominantly by the Thellier method from bulk volcanic rocks, fail to confirm this relationship. Although low paleointensities are commonly observed during periods of high reversal rate (notably, in the late Jurassic), higher than present-day intensity values are rare during periods of no or few reversals (superchrons). We have identified a fundamental mechanism that results in a pervasive and previously unrecognized low-field bias that affects most paleointensity data in the global database. Our results provide an explanation for the discordance betw...
[1] We present here new paleointensity data from 39 sampling sites collected from the quenched margi...
The existing database for paleointensity estimates of the ancient geomagnetic field contains more th...
The Mesozoic Dipole Low (MDL) is a period, covering at least ∼80 My, of low dipole moment that ended...
The global paleointensity database for 65–200 Ma was analyzed using a modified suite of paleointensi...
The paleomagnetic record is central to our understanding of the history of the Earth. The orientatio...
The global paleointensity database for 65–200 Ma was analyzed using a modified suite of paleointensi...
Data on the past intensity of Earth's magnetic field (paleointensity) are essential for understandin...
Data on the past intensity of Earth's magnetic field (paleointensity) are essential for understandin...
Data on the past intensity of Earth's magnetic field (paleointensity) are essential for understandin...
• We investigate a link between geomagnetic field intensity and reversal frequency • The global abso...
Earth's magnetic environment is dominated by its mainly dipolar internally generated magnetic field....
Earth's magnetic environment is dominated by its mainly dipolar internally generated magnetic field....
Nearly three decades ago paleomagnetists suggested that there existed a clear link between latitude ...
Determining the strength of the ancient geomagnetic field is vital to our understanding of the core ...
Nearly three decades ago paleomagnetists suggested that there existed a clear link between latitude ...
[1] We present here new paleointensity data from 39 sampling sites collected from the quenched margi...
The existing database for paleointensity estimates of the ancient geomagnetic field contains more th...
The Mesozoic Dipole Low (MDL) is a period, covering at least ∼80 My, of low dipole moment that ended...
The global paleointensity database for 65–200 Ma was analyzed using a modified suite of paleointensi...
The paleomagnetic record is central to our understanding of the history of the Earth. The orientatio...
The global paleointensity database for 65–200 Ma was analyzed using a modified suite of paleointensi...
Data on the past intensity of Earth's magnetic field (paleointensity) are essential for understandin...
Data on the past intensity of Earth's magnetic field (paleointensity) are essential for understandin...
Data on the past intensity of Earth's magnetic field (paleointensity) are essential for understandin...
• We investigate a link between geomagnetic field intensity and reversal frequency • The global abso...
Earth's magnetic environment is dominated by its mainly dipolar internally generated magnetic field....
Earth's magnetic environment is dominated by its mainly dipolar internally generated magnetic field....
Nearly three decades ago paleomagnetists suggested that there existed a clear link between latitude ...
Determining the strength of the ancient geomagnetic field is vital to our understanding of the core ...
Nearly three decades ago paleomagnetists suggested that there existed a clear link between latitude ...
[1] We present here new paleointensity data from 39 sampling sites collected from the quenched margi...
The existing database for paleointensity estimates of the ancient geomagnetic field contains more th...
The Mesozoic Dipole Low (MDL) is a period, covering at least ∼80 My, of low dipole moment that ended...