在MESSENGER的第一个水星飞越期间,对水星表面反射率的光谱观测
William E McClintock1, Noam R Izenberg, Gregory M Holsclaw
1Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, CO 80303, USA. william.mcclintock@lasp.colorado.edu
概括
水星 水星 水星 水星 水星
科学领域:
- 行星科学 行星科学
- 频谱学是一种光谱学.
- 地质化学 地质化学
背景情况:
- 探测器任务提供了前所未有的水星数据.
- 表面组成分析是理解行星演变的关键.
研究的目的:
- 确定水星表面的铁 (Fe2+) 含量.
- 调查表面组成和 regolith 成熟的变化.
主要方法:
- 同时的中紫外线到近红外反射频谱 (200-1300 nm).
- 吸收特征的分析,特别是<280nm和1微米波段.
- 对各种表面材料的高空间分辨率光谱分析.
主要成果:
- 在平均表面酸盐中含有低铁氧化物 (Fe2+) 含量 (<2-3%重量).
- 在各种表面材料中没有可检测的1微米Fe2+吸收带.
- 频谱变化表明组成差异和规石成熟水平.
结论:
- 水星的表面总体含有较低的铁素含量.
- 铁含量很可能在表面和深处都很低.
- 表面的组成和成熟度在水星上各不相同.
相关概念视频
Emission Spectra
When solids, liquids, or condensed gases are heated sufficiently, they radiate some of the excess energy as light. Photons produced in this manner have a range of energies, and thereby produce a continuous spectrum in which an unbroken series of wavelengths is present.
Atomic Emission Spectroscopy: Interference
In atomic emission spectroscopy (AES), high-temperature atomizers excite a broad range of elements and molecules that generate complex emissions from sources such as oxides, hydroxides, and flame combustion products in the flame or plasma. Several strategies can be employed to minimize spectral interferences caused by overlapping emission lines or bands. These include increasing instrument resolution, choosing alternative emission lines, optimally placing the detector in low-background regions,...
Scanning Electron Microscopy
A scanning electron microscope (SEM) is used to study the surface features of a sample by using an electron beam that scans the sample surface in a two-dimensional manner. Typically, areas between ~1 centimeter to 5 micrometers in width can be imaged. SEM can be used to image bacteria, viruses, tissues as well as larger samples like insects. Conventional SEM gives a magnification ranging from 20X to 30,000X and spatial resolution of 50 to 100 nanometers.
Fundamental Principles
Accelerated...
Fundamental Principles
Accelerated...
Interaction of EM Radiation with Matter: Spectroscopy
Electromagnetic (EM) radiation can be considered an oscillating electric and magnetic field propagating through a medium that can interact with matter in its path. The electric field in the radiation can interact with electrical charges in the atoms or molecules in the matter. On the other hand, the magnetic field can interact with the magnetic field in the atomic nucleus. The study of the interaction between electromagnetic radiation and matter is termed spectroscopy. Spectroscopy is the study...
NMR Spectroscopy: Chemical Shift Overview
The position of the absorption signal of a sample is reported relative to the position of the signal of tetramethylsilane (TMS), which is added as an internal reference while recording spectra. The difference between the absorption frequencies of the sample and TMS (in Hz) is divided by the spectrometer operating frequency (in MHz) to obtain a dimensionless quantity called the chemical shift. It is reported on the δ (delta) scale and expressed in parts per million.
For instance, the proton...
For instance, the proton...
Ultraviolet and Visible (UV–Vis) Spectroscopy: Overview
Ultraviolet–visible (UV–visible or UV–Vis) spectroscopy is an analytical technique that investigates the interaction between matter and UV–Vis light within the electromagnetic spectrum. This method is widely used for its versatility, simplicity, and relatively quick data acquisition, making it valuable for both qualitative and quantitative analysis. When UV–Vis radiation passes through a material, molecules absorb light depending on the energy required for electronic transitions. As a result...

