哈耶布萨2近红外光谱的小行星162173 Ryugu的表面组成
K Kitazato1, R E Milliken2, T Iwata3,4
1The University of Aizu, Fukushima, Japan. kitazato@u-aizu.ac.jp.
概括
接近地球的小行星
科学领域:
- 星球科学
- 光谱学
- 天文地质学
背景情况:
- 小行星162173Ryugu是Hayabusa2任务的目标.
- Ryugu被认为是一个原始的碳元素.
研究的目的:
- 通过反射光谱分析瑞古的表面组成.
- 为了提供Hayabusa2返回的样品的地质背景.
主要方法:
- 在Hayabusa2上使用近红外光谱仪 (NIRS3) 获取反射频谱.
- 分析光谱特征,特别是吸收带.
主要成果:
- 一个无处不在的2.72微米吸收特征,表明含有 (OH) 的矿物质,在瑞古的表面被检测到.
- OH的特征强度和低度类似于转化碳状石石.
- 在OH带位置的最小变化表明组成的均性.
结论:
- 瑞古的表面含有丰富的含矿物质.
- 这颗小行星很可能是一个由水质改变的母体碎片形成的废墟.
- 瑞古的组成与热或冲击变形的碳状石相一致.
相关概念视频
Infrared (IR) Spectroscopy: Overview
4.9K
When electromagnetic radiation passes through a material, atoms or molecules transition from a lower to a higher energy state by absorbing radiation corresponding to the energy difference between the two states. The absorption of infrared (IR) radiation causes transitions between vibrational energy levels in a molecule. Therefore, IR spectroscopy is a useful analytical tool for determining the molecular structure of molecules.
Different compounds display unique properties due to their...
Different compounds display unique properties due to their...
4.9K
Attenuated Total Reflectance (ATR) Infrared Spectroscopy: Overview
1.2K
Attenuated total reflectance (ATR) infrared spectroscopy is a powerful analytical technique used to study the composition of materials. It is widely employed in chemistry, materials science, forensic science, and other fields where sample characterization is required. ATR has several advantages over traditional transmission IR spectroscopy, including the requirement of little to no sample preparation and the ability to analyze a wide range of samples.
The ATR process begins by directing a beam...
The ATR process begins by directing a beam...
1.2K
Classifying Matter by Composition
90.1K
Matter: Pure Substances and Mixtures
According to its composition, the matter can be classified into two broad categories — pure substances and mixtures.
A pure substance is a form of matter that has a constant composition throughout with uniform properties. For example, any sample of sucrose has the same composition and same physical properties, such as melting point, color, and sweetness, regardless of the source from which it is isolated.
A mixture is composed of two or...
According to its composition, the matter can be classified into two broad categories — pure substances and mixtures.
A pure substance is a form of matter that has a constant composition throughout with uniform properties. For example, any sample of sucrose has the same composition and same physical properties, such as melting point, color, and sweetness, regardless of the source from which it is isolated.
A mixture is composed of two or...
90.1K
Composition of Blood
12.0K
The blood in our bodies comprises three major components: blood plasma, formed elements, and the extracellular matrix. Blood plasma is a yellowish fluid that constitutes 55% of the total blood volume. It is primarily made up of water and essential substances such as electrolytes and proteins. Blood plasma serves as a medium for transporting blood cells and also contains nutrients, enzymes, hormones, antibodies, and gases.
Formed elements constitute the remaining 45% of the blood volume. These...
Formed elements constitute the remaining 45% of the blood volume. These...
12.0K
Composite Bodies
1.4K
A composite body is a body made up of multiple parts, connected to form a larger, unified object. Each part has its own weight and center of gravity, which must be considered to determine the center of gravity of the composite body. In cases where the density or specific weight is constant, the center of gravity coincides with the centroid.
Composite bodies have widespread applications in mechanical engineering, from automobiles to aircraft to rockets. For example, an automobile wheel comprises...
Composite bodies have widespread applications in mechanical engineering, from automobiles to aircraft to rockets. For example, an automobile wheel comprises...
1.4K
Composition of Body Fluids
2.5K
Water functions as a solvent accommodating various solutes, which can be categorized under electrolytes and non-electrolytes. Non-electrolytes are usually held together by covalent bonds, restricting them from dissociating in solution, thereby leading to a lack of electrically charged components upon dissolving in water. They are predominantly organic molecules, such as glucose, creatinine, and urea. Electrolytes, on the other hand, are compounds that can break down into ions in water.
2.5K


