Studying cool star magnetic activity gives an important insight into the stellar dynamo and its relationship with stellar properties, as well as allowing us to place the Sun's magnetism in the context of other stars. Only 61 Cyg A (K5V) and τ Boo (F8V) are currently known to have magnetic cycles like the Sun's, where the large-scale magnetic field polarity reverses in phase with the star's chromospheric activity cycles. τ Boo has a rapid ~240 d magnetic cycle, and it is not yet clear whether this is related to the star's thin convection zone or if the dynamo is accelerated by interactions between τ Boo and its hot Jupiter. To shed light on this, we studied the magnetic activity of HD 75332 (F7V) which has similar physical properties to τ Bo...
The young and magnetically active K dwarf Epsilon Eridani exhibits a chromospheric activity cycle of...
Context. The long-term monitoring of magnetic cycles in cool stars is a key diagnostic in understand...
Context. The behaviour of the large-scale dipolar field, during a star’s magnetic cycle, can provide...
ELB is supported by an Australian Government Research Training Program (RTP) Scholarship. SJ acknowl...
23 pages, 14 figures, accepted for publication in MNRASInternational audienceStudying cool star magn...
Studying cool star magnetic activity gives an important insight into the stellar dynamo and its rela...
One of the aims of the BCool programme is to search for cycles in other stars and to understand how ...
SJ acknowledges support from the German Science Foundation (DFG) Research Unit FOR2544 ‘Blue Planets...
Zeeman Doppler imaging has successfully mapped the large-scale magnetic fields of stars over a large...
We present six epochs of spectropolarimetric observations of the hot-Jupiter-hosting star tau Bootis...
One of the aims of the BCool programme is to search for cycles in other stars and to understand how ...
Context. The long-term monitoring of magnetic cycles in cool stars is a key diagnostic in understand...
Cool main-sequence stars, such as the Sun, have magnetic fields which are generated by an internal d...
The young and magnetically active K dwarf Epsilon Eridani exhibits a chromospheric activity cycle of...
Context. The long-term monitoring of magnetic cycles in cool stars is a key diagnostic in understand...
Context. The behaviour of the large-scale dipolar field, during a star’s magnetic cycle, can provide...
ELB is supported by an Australian Government Research Training Program (RTP) Scholarship. SJ acknowl...
23 pages, 14 figures, accepted for publication in MNRASInternational audienceStudying cool star magn...
Studying cool star magnetic activity gives an important insight into the stellar dynamo and its rela...
One of the aims of the BCool programme is to search for cycles in other stars and to understand how ...
SJ acknowledges support from the German Science Foundation (DFG) Research Unit FOR2544 ‘Blue Planets...
Zeeman Doppler imaging has successfully mapped the large-scale magnetic fields of stars over a large...
We present six epochs of spectropolarimetric observations of the hot-Jupiter-hosting star tau Bootis...
One of the aims of the BCool programme is to search for cycles in other stars and to understand how ...
Context. The long-term monitoring of magnetic cycles in cool stars is a key diagnostic in understand...
Cool main-sequence stars, such as the Sun, have magnetic fields which are generated by an internal d...
The young and magnetically active K dwarf Epsilon Eridani exhibits a chromospheric activity cycle of...
Context. The long-term monitoring of magnetic cycles in cool stars is a key diagnostic in understand...
Context. The behaviour of the large-scale dipolar field, during a star’s magnetic cycle, can provide...