まとめ
17世紀初頭の太陽回転データは,マウンダー最小値以前の変化を明らかにしています. サン・サン・サン サン・サン・サン
科学分野:
- ソーラー物理学 ソーラー物理学
- 天文学 天文学
- 歴史的太陽活動について
背景:
- マウンダー最小期 (1645年 - 1715年) は,太陽の斑点活動が著しく減少した時期でした.
- この時代の太陽回転の変化を理解することは,太陽ダイナモモデルにとって極めて重要です.
研究 の 目的:
- 17世紀初頭の太陽回転の特徴を分析するために.
- 太陽回転とマウンダー最小値の発生との潜在的な関連を調査する.
主な方法:
- 紀元1625年~1626年,1642年~1644年の詳細な日光斑図の分析
- 2つの周期間の太陽回転パラメータ (赤道速度,微分回転) の比較.
主要な成果:
- 1625年~1626年の太陽回転は,現代の太陽回転に似ていた.
- 1642年から1644年の間に,太陽の赤道速度は3〜5%増加しました.
- 後の期間に微分回転が3倍に強まり,太陽活動減少と相関する.
結論:
- 1625年から1645年の間に太陽表面の自転が大きく変化した.
- この回転の変化は,マウンダー最小値の発生と一致した可能性が高い.
- 観測された赤道加速は,最近のドップラーデータの動向と一致しています.
関連する概念動画
Rotational Motion about a Fixed Axis
A rigid body's rotation around a fixed axis makes every point within it trace a circular path around a specific line or point. The term given to this type of spinning is defined by the angular position, symbolized by the angle θ. This angle is gauged from a static reference line to the revolving object. From this angular position, any variation is referred to as angular displacement, denoted by dθ. The extent of this displacement can be calculated in degrees, radians, or revolutions, where one...
Apparent Weight and the Earth's Rotation
Since all objects on the Earth's surface move through a circle every 24 hours, there must be a net centripetal force on each object, directed towards the center of that circle. The points of the north and south poles are the only exception to this rule.
For an object on the Earth's equator, the net centripetal force that accounts for its rotation is the Earth's pull towards its center, or the weight minus the normal force that prevents it from piercing into the Earth's surface. This force,...
For an object on the Earth's equator, the net centripetal force that accounts for its rotation is the Earth's pull towards its center, or the weight minus the normal force that prevents it from piercing into the Earth's surface. This force,...
Gyroscope: Precession
Precession can be demonstrated effectively through a spinning top. If a spinning top is placed on a flat surface near the surface of the Earth at a vertical angle and is not spinning, it will fall over due to the force of gravity producing a torque acting on its center of mass. However, if the top is spinning on its axis, it precesses about the vertical direction, rather than topple over due to this torque. Precessional motion is a combination of a steady circular motion of the axis and the...
Kepler's First Law of Planetary Motion
In the early 17th century, German astronomer and mathematician Johannes Kepler postulated three laws for the motion of planets in the solar system. He formulated his first two laws based on the observations of his forebears, Nikolaus Copernicus and Tycho Brahe.
Polish astronomer Nikolaus Copernicus put forth a theory that stated a heliocentric model for the solar system. According to this heliocentric theory, all the planets, including Earth, orbit the Sun in circular orbits.
On the other hand,...
Polish astronomer Nikolaus Copernicus put forth a theory that stated a heliocentric model for the solar system. According to this heliocentric theory, all the planets, including Earth, orbit the Sun in circular orbits.
On the other hand,...
Coriolis Force
An accelerating particle experiences a force equal to the mass multiplied by the acceleration in an inertial frame of reference. Consider a particle in a non-inertial frame of reference, such as a sliding ball on a rotating table. The acceleration of the ball in this rotating reference frame is different than in the intertial frame, which modifies its equation of motion. The fictitious forces acting additionally on a rotating frame of reference alter Newton's Second Law expression. Centripetal...
Magnetic Declination
Magnetic declination is the angle between true north, which aligns with the Earth's rotational axis, and magnetic north, which follows the direction of the Earth's magnetic field. This discrepancy exists because the magnetic poles do not coincide with the geographic poles. The value of magnetic declination depends on the observer's location on Earth and is subject to changes over time due to the dynamic nature of the Earth's magnetic field.The declination is called eastern when magnetic north...


