Records of relative paleointensity are subject to several sources of error. Temporal averaging due to gradual acquisition of magnetization removes high-frequency fluctuations, whereas random errors introduce fluctuations at high frequency. Both sources of error limit our ability to construct stochastic models from paleomagnetic observations. We partially circumvent these difficulties by recognizing that the largest affects occur at high frequency. To illustrate we construct a stochastic model from two recent inversions of paleomagnetic observations for the axial dipole moment. An estimate of the noise term in the stochastic model is recovered from a high-resolution inversion (CALS10k.2), while the drift term is estimated from the low-freque...
Polarity intervals from marine magnetic anomalies exhibit variability that departs from a Poisson pr...
Geomagnetic polarity transitions are often accompanied by a decrease in magnetic intensity. The time...
The most striking features in the temporal evolution of the Earth's dipolar magnetic field are polar...
Records of relative paleointensity are subject to several sources of error. Temporal averaging due t...
Several recent studies have used palaeomagnetic estimates of the virtual axial dipole moment to cons...
Deterministic forecasts for the next geomagnetic reversal are not feasible due to large uncertaintie...
The Earth's magnetic field originates primarily in the interior of the planet, and represents one of...
AbstractLow-dimensional models for Earth’s magnetic dipole may be a powerful tool for studying large...
We consider a stochastic differential equation model for Earth's axial magnetic dipole field. Our go...
Low-dimensional models for Earth's magnetic dipole may be a powerful tool for studying large-scale d...
Earth's magnetic environment is dominated by its mainly dipolar internally generated magnetic field....
The paleomagnetic record is central to our understanding of the history of the Earth. The orientatio...
We use stochastic models for fluctuations in the dipole moment to derive a geomagnetic power spectru...
The historical trend in the axial dipole is sufficient to reverse the field in less than 2 kyr. Asse...
Abstract. We consider a stochastic differential equation model for Earth's axial magnetic dipole fie...
Polarity intervals from marine magnetic anomalies exhibit variability that departs from a Poisson pr...
Geomagnetic polarity transitions are often accompanied by a decrease in magnetic intensity. The time...
The most striking features in the temporal evolution of the Earth's dipolar magnetic field are polar...
Records of relative paleointensity are subject to several sources of error. Temporal averaging due t...
Several recent studies have used palaeomagnetic estimates of the virtual axial dipole moment to cons...
Deterministic forecasts for the next geomagnetic reversal are not feasible due to large uncertaintie...
The Earth's magnetic field originates primarily in the interior of the planet, and represents one of...
AbstractLow-dimensional models for Earth’s magnetic dipole may be a powerful tool for studying large...
We consider a stochastic differential equation model for Earth's axial magnetic dipole field. Our go...
Low-dimensional models for Earth's magnetic dipole may be a powerful tool for studying large-scale d...
Earth's magnetic environment is dominated by its mainly dipolar internally generated magnetic field....
The paleomagnetic record is central to our understanding of the history of the Earth. The orientatio...
We use stochastic models for fluctuations in the dipole moment to derive a geomagnetic power spectru...
The historical trend in the axial dipole is sufficient to reverse the field in less than 2 kyr. Asse...
Abstract. We consider a stochastic differential equation model for Earth's axial magnetic dipole fie...
Polarity intervals from marine magnetic anomalies exhibit variability that departs from a Poisson pr...
Geomagnetic polarity transitions are often accompanied by a decrease in magnetic intensity. The time...
The most striking features in the temporal evolution of the Earth's dipolar magnetic field are polar...