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Electromagnetic spectroscopy



 
 
Electromagnetic spectroscopy is the spectroscopy
Spectroscopy

Spectroscopy was originally the study of the interaction between radiation and matter as a function of wavelength . In fact, historically, spectroscopy referred to the use of visible light dispersed according to its wavelength, e.g....
 of electromagnetic spectra
Electromagnetic spectrum

The electromagnetic spectrum is the range of all possible electromagnetic radiation frequencies. The "electromagnetic spectrum" of an object is the characteristic distribution of electromagnetic radiation from that particular object....
 which arise out of atom
Atom

|-! bgcolor=gray | Properties|-||}The atom is a basic unit of matter consisting of a dense, central atomic nucleus surrounded by a electron cloud of electric charge electrons....
s absorbing and emitting quanta of electromagnetic radiation
Electromagnetic radiation

Electromagnetic radiation takes the form of wave propagation waves in a vacuum or in matter. EM radiation has an electric field and magnetic field component which oscillate in phase perpendicular to each other and to the direction of energy Wave propagation....
. It is done with the aid of a spectrometer
Spectrometer

A spectrograph is an optical instrument used to measure properties of light over a specific portion of the electromagnetic spectrum, typically used in spectroscopic analysis to identify materials....
 (spectroscope).

tromagnetic spectroscopy can be classified into narrower fields as discussed below, though in some spectroscopic techniques, several processes may be happening at the same time.

Emission spectroscopy
Emission spectroscopy
Emission spectroscopy

Emission spectroscopy is a spectroscopy technique which examines the wavelengths of photons emitted by atoms or molecules during their transition from an excited state to a lower energy state....
 is the study of electromagnetic radiation spectra given off by atoms or molecules that undergo a transition to a lower energy level
Energy level

A Quantum mechanics system or particle that is Bound state, confined spatially, can only take on certain discrete values of energy, as opposed to Classical mechanics particles, which can have any energy....
.






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Encyclopedia


Electromagnetic spectroscopy is the spectroscopy
Spectroscopy

Spectroscopy was originally the study of the interaction between radiation and matter as a function of wavelength . In fact, historically, spectroscopy referred to the use of visible light dispersed according to its wavelength, e.g....
 of electromagnetic spectra
Electromagnetic spectrum

The electromagnetic spectrum is the range of all possible electromagnetic radiation frequencies. The "electromagnetic spectrum" of an object is the characteristic distribution of electromagnetic radiation from that particular object....
 which arise out of atom
Atom

|-! bgcolor=gray | Properties|-||}The atom is a basic unit of matter consisting of a dense, central atomic nucleus surrounded by a electron cloud of electric charge electrons....
s absorbing and emitting quanta of electromagnetic radiation
Electromagnetic radiation

Electromagnetic radiation takes the form of wave propagation waves in a vacuum or in matter. EM radiation has an electric field and magnetic field component which oscillate in phase perpendicular to each other and to the direction of energy Wave propagation....
. It is done with the aid of a spectrometer
Spectrometer

A spectrograph is an optical instrument used to measure properties of light over a specific portion of the electromagnetic spectrum, typically used in spectroscopic analysis to identify materials....
 (spectroscope).

Types of electromagnetic spectroscopy

Electromagnetic spectroscopy can be classified into narrower fields as discussed below, though in some spectroscopic techniques, several processes may be happening at the same time.

Emission spectroscopy


Emission spectroscopy
Emission spectroscopy

Emission spectroscopy is a spectroscopy technique which examines the wavelengths of photons emitted by atoms or molecules during their transition from an excited state to a lower energy state....
 is the study of electromagnetic radiation spectra given off by atoms or molecules that undergo a transition to a lower energy level
Energy level

A Quantum mechanics system or particle that is Bound state, confined spatially, can only take on certain discrete values of energy, as opposed to Classical mechanics particles, which can have any energy....
. Such a process is called fluorescence
Fluorescence

Fluorescence is a luminescence that is mostly found as an optical phenomenon in cold bodies, in which the molecular absorption of a photon triggers the emission of a photon with a longer wavelength....
 or, under certain conditions, phosphorescence
Phosphorescence

File:Phosphorescence.jpgFile:Phosphorescent.jpgPhosphorescence is a specific type of photoluminescence related to fluorescent. Unlike fluorescence, a phosphorescent material does not immediately re-emit the radiation it absorbs....
. Generally, emission spectroscopy deals with visible light and shorter wavelengths, since fluorescence is less likely to happen with long wavelengths. See also: spontaneous emission
Spontaneous emission

Spontaneous emission is the process by which a light source such as an atom, molecule, nanocrystal or atomic nucleus in an excited state undergoes a transition to the ground state and emits a photon....
.

Examples:
  • Fluorescence spectroscopy
    Fluorescence spectroscopy

    Fluorescence spectroscopy aka fluorometry or spectrofluorometry, is a type of electromagnetic spectroscopy which analyzes fluorescence from a sample....
  • Flame emission spectroscopy
  • X-ray fluorescence spectroscopy
  • Stellar spectroscopy


Absorption spectroscopy

Absorption spectroscopy
Absorption spectroscopy

Absorption spectroscopy refers to a range of techniques employing the interaction of electromagnetic radiation with matter. In absorption spectroscopy, the intensity of a beam of light measured before and after interaction with a sample is compared....
 is the study of electromagnetic radiation spectra absorbed by atoms or molecules that change energy levels; the atoms usually positioned between a radiation source and the observer. Often, it is used as an analytical technique; specific chemical compounds have a specific absorption spectrum that acts as a fingerprint. Moreover, the amount of absorption is related to the amount of absorbing compound. Absorption spectroscopy can be used to determine the concentration of chemical compounds in samples (see molar absorptivity
Molar absorptivity

The Mole extinction coefficient, also known as molar absorptivity, is a measurement of how strongly a chemical species absorbance light at a given wavelength....
).

Examples of absorption spectroscopy:
  • Vibrational spectroscopy - absorption of infrared
    Infrared

    Infrared radiation is electromagnetic radiation whose wavelength is longer than that of visible light , but shorter than that of terahertz radiation and microwaves ....
     radiation, see infrared spectroscopy
    Infrared spectroscopy

    Infrared spectroscopy is the subset of spectroscopy that deals with the infrared region of the electromagnetic spectrum. It covers a range of techniques, the most common being a form of absorption spectroscopy....
    ; often used as an analytical tool
  • Atomic absorption
    Atomic absorption spectroscopy

    In analytical chemistry, atomic absorption spectroscopy is a scientific technique for determining the concentration of a particular metal chemical element in a sample....
      - often used as an analytical tool
  • UV/visible spectroscopy - absorption of ultraviolet
    Ultraviolet

    Ultraviolet light is electromagnetic radiation with a wavelength shorter than that of visible light, but longer than x-rays, in the range 400 nanometer to 10 nm, and energies from 3 Electron volt to 124 eV....
     and visible light; often used as an analytical tool
  • Mossbauer spectroscopy - Measures the absorption of gamma rays by atoms bound in a solid as a function of gamma-ray energy. This is not an analytical technique; it is a means to understand certain microscopic processes in matter.


Other techniques

Electromagnetic radiation can interact with matter in ways other than simple absorption and emission, such as in the following techniques:

  • Circular dichroism
    Circular dichroism

    Circular dichroism is the differential absorption of left- and right-handed circular polarization light.A CD Spectrometer is an instrument that records this phenomenon as a function of wavelength....
     spectroscopy - measures effects of a sample on the polarization of light.
  • Magnetic circular dichroism
    Magnetic circular dichroism

    Magnetically induced circular dichroism , is the differential absorption of left and right circular polarization light in the presence of a magnetic field....
  • Nuclear magnetic resonance
    Nuclear magnetic resonance

    Nuclear magnetic resonance is the name given to a physical resonance phenomenon involving the observation of specific quantum mechanics magnetism properties of an atomic atomic nucleus in the presence of an applied, external magnetic field....
     (NMR) - measures the resonant absorption of radiofrequency radiation by nuclei in a strong magnetic field
    Magnetic field

    A magnetism field is a vector field which can exert a magnetic force on moving electric charges and on magnetic dipoles . When placed in a magnetic field, magnetic dipoles tend to align their axes parallel to the magnetic field....
    . Absorption peaks
    Fluorophore

    A fluorophore, in analogy to a chromophore, is a component of a molecule which causes a molecule to be fluorescent. It is a functional group in a molecule which will absorb energy of a specific wavelength and re-emit energy at a different wavelength....
     correspond to transitions in the nuclear spin states of the sample molecule(s).
  • Electron spin resonance - similar to NMR, but looking at electrons.
  • Raman spectroscopy
    Raman spectroscopy

    Raman spectroscopy is a Spectroscopy technique used in condensed matter physics and chemistry to study vibrational, rotational, and other low-frequency modes in a system....
     - A molecule can absorb a part of the energy of a photon, which results in a change in frequency (or wavelength) of the photon. The amount of absorbed energy corresponds to an infrared transition in the molecule, even though the photon might have a visible-light wavelength.
  • Stark spectroscopy
    Stark spectroscopy

    Stark spectroscopy is a form of spectroscopy based on the Stark effect. Its application differs in chemistry than in physics.In chemistry, changes in the spectrum of a sample material due to the applied electric field of known strength are used to determine the chemical composition of the sample....
     - measures effects of electrical fields on the spectra.


Examples


The spectrum of sunlight

Matter reflects, absorbs or scatters regions of the electromagnetic radiation shone upon it. Depending on the Correlated Color Temperature of the light source, humans perceive the object to be of a differing color. Man has attempted to utilize Plank's Law to assign a specific Correlated Color temperature
Color temperature

Color temperature is a characteristic of visible light that has important applications in lighting, photography, videography, publishing, and other fields....
 to each light source sold in stores. Each bulb measured, was assigned a Correlated Color Temperature CCT in kelvin
Kelvin

The kelvin is a Units of measurement of temperature and is one of the seven SI base units. The Kelvin scale is a Thermodynamic temperature scale where absolute zero, the theoretical absence of all thermal energy, is zero ....
s; 2800 K is a living room light, 6000 K is a bright sunny day. "Correlated" is used because all is compared back to a perfect black body
Black body

In physics, a black body is an Physical body that absorbs all electromagnetic radiation that falls on it. No electromagnetic radiation passes through it and none is Reflection ....
 radiator.

The higher the temperature, the shorter (and bluer) the average visible wavelength. The sun, which has a temperature around 6000 K, emits most strongly in the visible light. However, certain wavelengths are missing from the solar spectrum, which is the result of chemical element
Chemical element

A chemical element is a type of atom that is distinguished by its atomic number; that is, by the number of protons in its atomic nucleus. The term is also used to refer to a pure chemical Chemical substance composed of atoms with the same number of protons....
s in the chromosphere
Chromosphere

The chromosphere is a thin layer of the Sun's celestial body's atmosphere just above the photosphere, roughly 2,000 kilometers deep. The chromosphere is more visually transparent than the photosphere....
 of the sun
Sun

The Sun , a G V star, is the star at the center of the Solar System. The Earth and other matter orbit the Sun, which by itself accounts for about 98.6% of the Solar System's mass....
 that have resonant transitions at those wavelengths. From the exact wavelengths of these missing parts of the spectrum, or absorption lines, we can deduce which elements are present in the sun. The fact that these elements have absorbed the radiation indicates that the chromosphere is cooler than the photosphere.

However absorption spectra can not give us information about the abundance of the various elements. This is because hydrogen
Hydrogen

Hydrogen is the chemical element with atomic number 1. It is represented by the chemical symbol H. At standard temperature and pressure, hydrogen is a colorless, odorless, nonmetallic, tasteless, highly combustion and explosive Diatomic molecule gas with the molecular formula H2....
 and helium
Helium

Helium is a colorless, odorless, tasteless, non-toxic, inert monatomic chemical element that heads the noble gas group in the periodic table and whose atomic number is 2....
 (the main constituents of the sun) need much more energy to excite them enough to absorb radiation than other elements (such as calcium
Calcium

Calcium is the chemical element with the symbol Ca and atomic number 20. It has an atomic mass of 40.078 amu. Calcium is a soft grey alkaline earth metal, and is the fifth most abundant element by mass in the earth's Crust ....
) present. So even though H and He are more abundant, a much smaller percentage of them get excited enough to produce a high intensity. To get a better understanding of abundance of these elements it is necessary to study the emission spectrum
Emission spectrum

The emission spectrum of an Chemical element or Chemical compound is the relative intensity of electromagnetic radiation of each frequency Emission by atoms or molecules of that element or compound when they are excited....
 of elements in the chromosphere. It is only possible to assess this when the photosphoric radiation is totally obscured during an eclipse
Eclipse

An eclipse is an astronomical event that occurs when one celestial object moves into the shadow of another. The term is derived from the ancient Greek noun , from verb , "I cease to exist," a combination of prefix , from preposition , "out," and of verb , "I am absent"....
. At this time the emission spectrum of the chromosphere is highly dominated by hydrogen, which is the main constituent of the sun.

Absorption in the atmosphere

The material in Earth's atmosphere
Earth's atmosphere

The Earth's atmosphere is a layer of gases surrounding the planet Earth that is retained by the Earth's gravity. Dry air contains roughly 78.08% nitrogen, 20.95% oxygen, 0.93% argon, 0.038% Carbon dioxide in the Earth's atmosphere, and trace amounts of other gases....
 absorbs some of the sunlight passing through it. This has been measured at sea level and various altitudes. Estimates were made of the likely spectrum of sunlight above the atmosphere and the absorption within the atmosphere. Actual measurements above the atmosphere required spacecraft which were able to take such readings. These efforts are illustrated in the following images.

See also

  • Electromagnetic spectrum
    Electromagnetic spectrum

    The electromagnetic spectrum is the range of all possible electromagnetic radiation frequencies. The "electromagnetic spectrum" of an object is the characteristic distribution of electromagnetic radiation from that particular object....
  • Flame test
    Flame test

    A flame test is a procedure used in chemistry to detect the presence of certain metal ions, based on each Chemical element characteristic emission spectrum....