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・ Stellar density
・ Stellar designation
・ Stellar drift
・ Stellar dynamics
・ Stellar engine
・ Stellar engineering
・ Stellar envelope
・ Stellar evolution
・ Stellar Group
・ Stellar Group (construction company)
・ Stellar II
・ Stellar isochrone
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・ Stellar kinematics
Stellar magnetic field
・ Stellar mass
・ Stellar mass loss
・ Stellar Motel
・ Stellar nucleosynthesis
・ Stellar Occasion
・ Stellar parallax
・ Stellar physics
・ Stellar population
・ Stellar Project
・ Stellar pulsations
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・ Stellar Regions
・ Stellar rotation
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Stellar magnetic field : ウィキペディア英語版
Stellar magnetic field

A stellar magnetic field is a magnetic field generated by the motion of conductive plasma inside a star. This motion is created through convection, which is a form of energy transport involving the physical movement of material. A localized magnetic field exerts a force on the plasma, effectively increasing the pressure without a comparable gain in density. As a result, the magnetized region rises relative to the remainder of the plasma, until it reaches the star's photosphere. This creates starspots on the surface, and the related phenomenon of coronal loops.
==Measurement==

The magnetic field of a star can be measured by means of the Zeeman effect. Normally the atoms in a star's atmosphere will absorb certain frequencies of energy in the electromagnetic spectrum, producing characteristic dark absorption lines in the spectrum. When the atoms are within a magnetic field, however, these lines become split into multiple, closely spaced lines. The energy also becomes polarized with an orientation that depends on orientation of the magnetic field. Thus the strength and direction of the star's magnetic field can be determined by examination of the Zeeman effect lines.
A stellar spectropolarimeter is used to measure the magnetic field of a star. This instrument consists of a spectrograph combined with a polarimeter. The first instrument to be dedicated to the study of stellar magnetic fields was NARVAL, which was mounted on the Bernard Lyot Telescope at the Pic du Midi de Bigorre in the French Pyrenees mountains.
Various measurements—including magnetometer measurements over the last 150 years; 14C in tree rings; and 10Be in ice cores—have established substantial magnetic variability of the Sun on decadal, centennial and millennial time scales.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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