This is Part 2 of a study of the near-Earth heliospheric magnetic field strength, B, since 1750. Part 1 produced composite estimates of B from geomagnetic and sunspot data over the period 1750–2013. Sunspot-based reconstructions can be extended back to 1610, but the paleocosmic ray (PCR) record is the only data set capable of providing a record of solar activity on millennial timescales. The process for converting 10Be concentrations measured in ice cores to B is more complex than with geomagnetic and sunspot data, and the uncertainties in B derived from cosmogenic nuclides (~20% for any individual year) are much larger. Within this level of uncertainty, we find reasonable overall agreement between PCR-based B and the geomagnetic- and sunsp...
The orientation of the heliospheric magnetic field (HMF) in near‒Earth space is generally a good ind...
Solar cycle 24 is notable for three features that can be found in previous cycles but which have bee...
In the concluding paper of this tetralogy, we here use the different geomagnetic activity indices to...
We present two separate time series of the near-Earth heliospheric magnetic field strength (B) based...
This is Part 2 of a study of the near-Earth heliospheric magnetic field strength, B, since 1750. Par...
Historic geomagnetic activity observations have been used to reveal centennial variations in the ope...
We present two separate time series of the near-Earth heliospheric magnetic field strength (B) based...
Reconstructions of long-term solar variability underpin our understanding of the solar dynamo, poten...
Context: Cosmogenic isotopes provide useful estimates of past solar magnetic activity, constraining ...
Recent studies of the variation of geomagnetic activity over the past 140 years have quantified the ...
Typical reconstructions of historic heliospheric magnetic field (HMF) BHMF are based on the analysis...
Results from all phases of the orbits of the Ulysses spacecraft have shown that the magnitude of the...
Superposed epoch studies have been carried out in order to determine the ionospheric response at mid...
Reconstructions of the heliospheric magnetic field (HMF) in the past centuries are mainly based on th...
The orientation of the heliospheric magnetic field (HMF) in near‒Earth space is generally a good ind...
Solar cycle 24 is notable for three features that can be found in previous cycles but which have bee...
In the concluding paper of this tetralogy, we here use the different geomagnetic activity indices to...
We present two separate time series of the near-Earth heliospheric magnetic field strength (B) based...
This is Part 2 of a study of the near-Earth heliospheric magnetic field strength, B, since 1750. Par...
Historic geomagnetic activity observations have been used to reveal centennial variations in the ope...
We present two separate time series of the near-Earth heliospheric magnetic field strength (B) based...
Reconstructions of long-term solar variability underpin our understanding of the solar dynamo, poten...
Context: Cosmogenic isotopes provide useful estimates of past solar magnetic activity, constraining ...
Recent studies of the variation of geomagnetic activity over the past 140 years have quantified the ...
Typical reconstructions of historic heliospheric magnetic field (HMF) BHMF are based on the analysis...
Results from all phases of the orbits of the Ulysses spacecraft have shown that the magnitude of the...
Superposed epoch studies have been carried out in order to determine the ionospheric response at mid...
Reconstructions of the heliospheric magnetic field (HMF) in the past centuries are mainly based on th...
The orientation of the heliospheric magnetic field (HMF) in near‒Earth space is generally a good ind...
Solar cycle 24 is notable for three features that can be found in previous cycles but which have bee...
In the concluding paper of this tetralogy, we here use the different geomagnetic activity indices to...