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Radiometry is a set of techniques for
measuring Measurement is the quantification of attributes of an object or event, which can be used to compare with other objects or events. In other words, measurement is a process of determining how large or small a physical quantity is as compared ...
electromagnetic radiation In physics, electromagnetic radiation (EMR) consists of waves of the electromagnetic (EM) field, which propagate through space and carry momentum and electromagnetic radiant energy. It includes radio waves, microwaves, infrared, (visib ...
, including
visible light Light or visible light is electromagnetic radiation that can be perceived by the human eye. Visible light is usually defined as having wavelengths in the range of 400–700 nanometres (nm), corresponding to frequencies of 750–420 t ...
. Radiometric techniques in
optics Optics is the branch of physics that studies the behaviour and properties of light, including its interactions with matter and the construction of instruments that use or detect it. Optics usually describes the behaviour of visible, ultrav ...
characterize the distribution of the radiation's power in space, as opposed to photometric techniques, which characterize the light's interaction with the human eye. The fundamental difference between radiometry and photometry is that radiometry gives the entire optical radiation spectrum, while photometry is limited to the visible spectrum. Radiometry is distinct from
quantum In physics, a quantum (plural quanta) is the minimum amount of any physical entity ( physical property) involved in an interaction. The fundamental notion that a physical property can be "quantized" is referred to as "the hypothesis of quantizat ...
techniques such as
photon A photon () is an elementary particle that is a quantum of the electromagnetic field, including electromagnetic radiation such as light and radio waves, and the force carrier for the electromagnetic force. Photons are massless, so they alwa ...
counting. The use of radiometers to determine the temperature of objects and gasses by measuring radiation flux is called
pyrometry A pyrometer is a type of remote-sensing thermometer used to measure the temperature of distant objects. Various forms of pyrometers have historically existed. In the modern usage, it is a device that from a distance determines the temperature o ...
. Handheld pyrometer devices are often marketed as infrared thermometers. Radiometry is important in
astronomy Astronomy () is a natural science that studies celestial objects and phenomena. It uses mathematics, physics, and chemistry in order to explain their origin and evolution. Objects of interest include planets, moons, stars, nebulae, g ...
, especially
radio astronomy Radio astronomy is a subfield of astronomy that studies celestial objects at radio frequencies. The first detection of radio waves from an astronomical object was in 1933, when Karl Jansky at Bell Telephone Laboratories reported radiation comin ...
, and plays a significant role in Earth remote sensing. The measurement techniques categorized as ''radiometry'' in optics are called ''photometry'' in some astronomical applications, contrary to the optics usage of the term. Spectroradiometry is the measurement of absolute radiometric quantities in narrow bands of wavelength.


Radiometric quantities


Integral and spectral radiometric quantities

Integral In mathematics, an integral assigns numbers to functions in a way that describes displacement, area, volume, and other concepts that arise by combining infinitesimal data. The process of finding integrals is called integration. Along with ...
quantities (like
radiant flux In radiometry, radiant flux or radiant power is the radiant energy emitted, reflected, transmitted, or received per unit time, and spectral flux or spectral power is the radiant flux per unit frequency or wavelength, depending on whether the spe ...
) describe the total effect of radiation of all
wavelength In physics, the wavelength is the spatial period of a periodic wave—the distance over which the wave's shape repeats. It is the distance between consecutive corresponding points of the same phase on the wave, such as two adjacent crests, tr ...
s or frequencies, while
spectral ''Spectral'' is a 2016 3D military science fiction, supernatural horror fantasy and action-adventure thriller war film directed by Nic Mathieu. Written by himself, Ian Fried, and George Nolfi from a story by Fried and Mathieu. The film stars J ...
quantities (like spectral power) describe the effect of radiation of a single wavelength ''λ'' or frequency ''ν''. To each integral quantity there are corresponding spectral quantities, for example the radiant flux Φe corresponds to the spectral power Φe,''λ'' and Φe,''ν''. Getting an integral quantity's spectral counterpart requires a limit transition. This comes from the idea that the precisely requested wavelength
photon A photon () is an elementary particle that is a quantum of the electromagnetic field, including electromagnetic radiation such as light and radio waves, and the force carrier for the electromagnetic force. Photons are massless, so they alwa ...
existence probability is zero. Let us show the relation between them using the radiant flux as an example: Integral flux, whose unit is W: :\Phi_\mathrm. Spectral flux by wavelength, whose unit is : :\Phi_ = , where \mathrm\Phi_\mathrm is the radiant flux of the radiation in a small wavelength interval lambda - , \lambda + /math>. The area under a plot with wavelength horizontal axis equals to the total radiant flux. Spectral flux by frequency, whose unit is : :\Phi_ = , where \mathrm\Phi_\mathrm is the radiant flux of the radiation in a small frequency interval nu - , \nu + /math>. The area under a plot with frequency horizontal axis equals to the total radiant flux. The spectral quantities by wavelength ''λ'' and frequency ''ν'' are related to each other, since the product of the two variables is the
speed of light The speed of light in vacuum, commonly denoted , is a universal physical constant that is important in many areas of physics. The speed of light is exactly equal to ). According to the special theory of relativity, is the upper limit fo ...
(\lambda \cdot \nu = c): :\Phi_ = \Phi_, or \Phi_ = \Phi_, or \lambda \Phi_ = \nu \Phi_. The integral quantity can be obtained by the spectral quantity's integration: :\Phi_\mathrm = \int_0^\infty \Phi_\, \mathrm\lambda = \int_0^\infty \Phi_\, \mathrm\nu = \int_0^\infty \lambda \Phi_\, \mathrm \ln \lambda = \int_0^\infty \nu \Phi_\, \mathrm \ln \nu.


See also

*
Reflectivity The reflectance of the surface of a material is its effectiveness in reflecting radiant energy. It is the fraction of incident electromagnetic power that is reflected at the boundary. Reflectance is a component of the response of the electronic ...
* Microwave radiometer * Measurement of ionizing radiation * Radiometric calibration *
Radiometric resolution Color depth or colour depth (see American and British English spelling differences#-our, -or, spelling differences), also known as Bit depth (computer graphics), bit depth, is either the number of bits used to user interface, indicate the color o ...


References


External links


Radiometry and photometry FAQ
Professor Jim Palmer's Radiometry FAQ page (The University of Arizona College of Optical Sciences). {{Authority control Measurement Optical metrology Telecommunications engineering Observational astronomy Electromagnetic radiation