光谱学 is the study of the interaction between matter and electromagnetic radiation as a function of the radiation’s wavelength or frequency. A spectroscopic instrument produces a spectrum by dispersing the radiation according to its wavelength. This spectrum reveals how the matter absorbs, emits, or scatters the radiation, providing information about the matter’s composition, structure, and physical properties.
光谱学
- Isaac Newton
The core idea of spectroscopy is that different materials interact with light (or any electromagnetic radiation) in unique ways. When radiation passes through a substance or is emitted by it, specific wavelengths are absorbed or emitted, creating a characteristic pattern or “spectrum”. This pattern is like a fingerprint for the atoms, molecules, or ions in the substance. The positions of the spectral lines (dark for absorption, bright for emission) correspond to the energy differences between quantum states of the material. For example, an electron in an atom can jump to a higher energy level by absorbing a photon of a specific energy, or it can fall to a lower level by emitting a photon. The energy of this photon is directly related to its frequency and wavelength. By analyzing the intensity and position of these lines, scientists can deduce the chemical composition, temperature, density, and motion of the object being studied. This principle applies across the entire electromagnetic spectrum, from radio waves to gamma rays, leading to a vast array of spectroscopic techniques tailored for different types of analysis.
类型
中断
使用方法
前体
- Isaac Newton’s experiments with prisms demonstrating the dispersion of white light (1672)
- Discovery of wave nature of light by Christiaan Huygens (1678)
- Development of the concept of atoms and elements
应用
- astronomical observation of celestial bodies
- chemical analysis
- medical diagnostics
- 材料科学
- environmental monitoring
专利:
迎接新挑战
机械工程师、项目、工艺工程师或研发经理
可在短时间内接受新的挑战。
通过 LinkedIn 联系我
塑料金属电子集成、成本设计、GMP、人体工程学、中高容量设备和耗材、精益制造、受监管行业、CE 和 FDA、CAD、Solidworks、精益西格玛黑带、医疗 ISO 13485
相关发明、创新和技术原理