Search
Menu
DataRay Inc. - ISO 11146-Compliant Laser Beam Profilers
Photonics HandbookTest & Measurement

Spectroscopy: Mastering the Techniques

Facebook X LinkedIn Email
Spectrochemical analysis employing optical spectroscopic methods is used to monitor the water we drink, the food we eat, the status of human health, and the quality of the environment. Such methods are also crucial to the development of safe and valuable industrial processes.

Dr. John R. Gilchrist, Clyde HSI

The scope of optical spectroscopic instrumentation is indeed very broad. Many analytical methods rely on the interaction of radiation with matter and are often described in the context of quantum and statistical mechanics. The instrumentation itself consists of optics, mechanics, electronics, and signal processing. The resultant data are normally analyzed using statistics and information processing theory. We will examine some of the techniques of optical spectroscopy in the UV-VIS-IR region of the spectrum. Techniques such as nuclear magnetic resonance, electron spin resonance, microwave...Read full article

Related content from Photonics Media



    Articles


    Products


    Photonics Handbook Articles


    White Papers


    Webinars


    Photonics Dictionary Terms


    Media


    Photonics Buyers' Guide Categories


    Companies
    Glossary
    raman spectroscopy
    Raman spectroscopy is a technique used in analytical chemistry and physics to study vibrational, rotational, and other low-frequency modes in a system. Named after the Indian physicist Sir C.V. Raman who discovered the phenomenon in 1928, Raman spectroscopy provides information about molecular vibrations by measuring the inelastic scattering of monochromatic light. Here is a breakdown of the process: Incident light: A monochromatic (single wavelength) light, usually from a laser, is...
    stimulated emission
    Radiation similar in origin to spontaneous emission but determined by the presence of other radiation having the same frequency. Because the phase and amplitude of the stimulated wave depend on the stimulating wave, this radiation is coherent with the stimulating wave. The rate of stimulated emission is proportional to the intensity of the stimulating radiation.
    Basic ScienceFeaturesindustrialpopulation densityRaman spectroscopyspectroscopystimulated emissionTest & Measurement

    We use cookies to improve user experience and analyze our website traffic as stated in our Privacy Policy. By using this website, you agree to the use of cookies unless you have disabled them.