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WIMP



 
 
In astrophysics
Astrophysics

Astrophysics is the branch of astronomy that deals with the physics of the universe, including the physical properties of astronomical objects such as galaxy, stars, planets, exoplanets, and the interstellar medium, as well as their interactions....
, weakly interacting massive particles, or WIMPs, are hypothetical particles serving as one possible solution to the dark matter
Dark matter

In astronomy and physical cosmology, dark matter is Hypothesis matter that is undetectable by its emitted electromagnetic radiation, but whose presence can be inferred from gravity effects on visible matter....
 problem. These particles interact through the weak nuclear force and gravity, and possibly through other interactions no stronger than the weak force. Because they do not interact with electromagnetism they cannot be seen directly, and because they do not interact with the strong nuclear force
Nuclear force

The nuclear force is the force between two or more nucleons. It is responsible for binding of protons and neutrons into Atomic nucleus. To a large extent, this force can be understood in terms of the exchange of virtual light mesons, such as the pions....
 they do not react strongly with atomic nuclei.

This combination of properties gives WIMPs many of the properties of neutrino
Neutrino

Neutrinos are elementary particles that travel close to the speed of light, lack an electric charge, are able to pass through ordinary matter almost undisturbed and are thus extremely difficult to detect....
s, save for being far more massive and therefore slower.

Theoretical arguments
Although the existence of WIMPs in nature is hypothetical at this point, it would resolve a number of astrophysical and cosmological problems related to dark matter.






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In astrophysics
Astrophysics

Astrophysics is the branch of astronomy that deals with the physics of the universe, including the physical properties of astronomical objects such as galaxy, stars, planets, exoplanets, and the interstellar medium, as well as their interactions....
, weakly interacting massive particles, or WIMPs, are hypothetical particles serving as one possible solution to the dark matter
Dark matter

In astronomy and physical cosmology, dark matter is Hypothesis matter that is undetectable by its emitted electromagnetic radiation, but whose presence can be inferred from gravity effects on visible matter....
 problem. These particles interact through the weak nuclear force and gravity, and possibly through other interactions no stronger than the weak force. Because they do not interact with electromagnetism they cannot be seen directly, and because they do not interact with the strong nuclear force
Nuclear force

The nuclear force is the force between two or more nucleons. It is responsible for binding of protons and neutrons into Atomic nucleus. To a large extent, this force can be understood in terms of the exchange of virtual light mesons, such as the pions....
 they do not react strongly with atomic nuclei.

This combination of properties gives WIMPs many of the properties of neutrino
Neutrino

Neutrinos are elementary particles that travel close to the speed of light, lack an electric charge, are able to pass through ordinary matter almost undisturbed and are thus extremely difficult to detect....
s, save for being far more massive and therefore slower.

Theoretical arguments


Although the existence of WIMPs in nature is hypothetical at this point, it would resolve a number of astrophysical and cosmological problems related to dark matter. The main theoretical characteristics of a WIMP are:
  • Interaction only through the weak nuclear force and gravity, or at least with interaction cross-sections no higher than the weak scale;
  • Large mass compared to standard particles. (WIMPs with sub-GeV masses may be referred to as Light Dark Matter
    Light dark matter

    In astronomy and Physical cosmology, light dark matter refers to dark matter WIMP candidates with masses less than 1 Electron volt. These particles are heavier than warm dark matter and hot dark matter, but are lighter than the traditional forms of cold dark matter....
    .)


Because of their lack of interaction with normal matter, they would be dark and invisible through normal electromagnetic observations. Because of their large mass, they would be relatively slow moving and therefore cold. As a result they would tend to remain clumpy. Simulations of a universe full of cold dark matter
Cold dark matter

Cold dark matter is a refinement of the big bang theory that contains the additional assumption that most of the matter in the Universe consists of material that cannot be observed by its electromagnetic radiation and hence is dark while at the same time the particles making up this matter are slow and hence are cold....
 produce galaxy distributions that are roughly similar to that which is observed. WIMPs are considered one of the main candidates for "cold dark matter", the other being massive astrophysical compact halo objects (MACHO
Macho

Macho can refer to:*The property of being overtly masculinity, hence the Spanish word Machismo*Massive compact halo object , a general name for any kind of astronomical body that might explain the apparent presence of dark matter in galaxy halos....
s). (These names were deliberately chosen for contrast, with MACHOs named later than WIMPs).

Also, in contrast to MACHOs, there are no known particles within the standard model
Standard Model

The Standard Model of particle physics is a theory of three of the four known fundamental interactions and the elementary particles that take part in these interactions....
of particle physics that have all the properties of WIMPs. The particles that have little interaction with normal matter, such as neutrino
Neutrino

Neutrinos are elementary particles that travel close to the speed of light, lack an electric charge, are able to pass through ordinary matter almost undisturbed and are thus extremely difficult to detect....
s, are all very light, and hence would be fast moving or hot
Temperature

In physics, temperature is a physical property of a Physical system that underlies the common notions of hot and cold; something that feels hotter generally has the greater temperature....
. Hot dark matter
Hot dark matter

Hot dark matter is a hypothetical form of dark matter which consists of particles that travel with ultrarelativistic velocities. The best candidate for the identity of hot dark matter is the neutrino....
 would smear out the large scale structure of galaxies and thus is not considered a viable cosmological model. WIMP-like particles are predicted by R-parity
R-parity

R-parity is a concept in particle physics. In the MSSM of the standard model, baryon number and lepton number are no longer conserved by all of the renormalizable couplings...
-conserving supersymmetry
Supersymmetry

In particle physics, supersymmetry is a symmetry that relates elementary particles of one Spin to another particle that differs by half a unit of spin and are known as superpartners....
, a popular type of extension to the standard model, although none of the large number of new particles in supersymmetry has been observed.

Experimental detection

Because WIMPs may only interact through gravitational and weak forces, they are extremely difficult to detect. However, there are many experiments underway to attempt to detect WIMPs both directly and indirectly. Although predicted scattering rates for WIMPs from nuclei are significant for large detector target masses, prediction that halo WIMPs may, as they pass through 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....
, interact with solar protons and helium nuclei. Such an interaction would cause a WIMP to lose energy and become "captured" by the Sun (see Solar WIMP capture). As more and more WIMPs thermalize inside the Sun, they begin to annihilate with each other, forming a variety of particles including high-energy neutrinos. These neutrinos may then travel to the Earth to be detected in one of the many neutrino telescopes, such as the Super-Kamiokande
Super-Kamiokande

Super-Kamiokande, or Super-K for short, is a Neutrino detector in the city of Hida, Gifu, Gifu Prefecture, Japan. The observatory was designed to search for proton decay, study solar neutrino and Neutrino#Atmospheric neutrinoss, and keep watch for supernovas in the Milky Way Galaxy....
 detector in Japan. The number of neutrino events detected per day at these detectors depends upon the properties of the WIMP, as well as on the mass of the Higgs boson
Higgs boson

In particle physics, the Higgs boson is a massive Scalar field theory elementary particle predicted to exist by the Standard Model.The Higgs boson is the only Standard Model particle that has not yet been observed....
. Similar experiments are underway to detect neutrinos from WIMP annihilations within the Earth
Earth

Earth is the third planet from the Sun. Earth is the largest of the terrestrial planets in the Solar System in diameter, mass and density. It is also referred to as the World and Wiktionary:Terra.Note that by International Astronomical Union convention, the term "Terra" is used for naming extensive land masses, rather...
 and from within the galactic center.

It is important to note that, while most WIMP models indicate that a large enough number of WIMPs would be captured in large celestial bodies for these experiments to succeed, it remains possible that these models are either incorrect or only explain part of the dark matter phenomenon. Thus, even with the multiple experiments dedicated to providing indirect evidence for the existence of "Cold Dark Matter", direct detection measurements are also necessary to solidify the theory of WIMPs.

Although most WIMPs encountering the Sun or the Earth are expected to pass through without any effect, it is hoped that a large number of dark matter WIMPs crossing a sufficiently large detector will interact often enough to be seen—at least a few events per year. The general strategy of current attempts to detect WIMPs is to find very sensitive systems that can be scaled up to large volumes. This follows the lessons learned from the history of the discovery and (by now) routine detection of the neutrino.
Cdms Parameter Space 2004
A technique used by the Cryogenic Dark Matter Search
Cryogenic Dark Matter Search

The Cryogenic Dark Matter Search is a series of experiments designed to directly detect particle dark matter in the form of Weakly interacting massive particless....
 (CDMS) detector at the Soudan Mine relies on multiple very cold germanium
Germanium

Germanium is a chemical element with the symbol Ge and atomic number 32. It is a lustrous, hard, greyish-white metalloid in the carbon group, chemically similar to its group neighbors tin and silicon....
 and silicon
Silicon

Silicon is the most common metalloid. It is a chemical element, which has the symbol Si and atomic number 14. The atomic mass is 28.0855....
 crystal
Crystal

A crystal or crystalline solid is a solid material whose constituent atoms, molecules, or ions are arranged in an orderly repeating pattern extending in all three spatial dimensions....
s. The crystals (each about the size of a hockey puck) are cooled to about 50 millikelvins. A layer of metal (aluminium and tungsten) at the surfaces is used to detect a WIMP passing through the crystal. This design hopes to detect vibrations in the crystal matrix generated by an atom being "kicked" by a WIMP. The tungsten metal sensors are held at the critical temperature so they are in the superconducting state. Large crystal vibrations will generate heat in the metal and are detectable because of a change in resistance
Electrical resistance

The electrical resistance of an object is a measure of its opposition to the passage of a steady electrical current. An object of uniform cross section will have a resistance proportional to its length and inversely proportional to its cross-sectional area, and proportional to the resistivity of the material....
.

The Directional Recoil Identification From Tracks
Directional Recoil Identification From Tracks

The Directional Recoil Identification From Tracks detector is a low pressure negative ion time projection chamber designed to detect weakly interacting massive particles - a prime dark matter candidate....
 (DRIFT) collaboration is attempting to utilise the predicted directionality of the WIMP signal in order to prove the existence of WIMPs. DRIFT detectors use a 1m3 volume of low pressure carbon disulfide
Carbon disulfide

Carbon disulfide is a colorless, volatile liquid with the chemical formula CS2. The compound is used frequently as a building block in organic chemistry as well as an industrial and chemical non-polar solvent....
 gas as a target material. The use of a low pressure gas means that a WIMP colliding with an atom in the target will cause it to recoil several mm leaving a track of charged particles in the gas. This charged track is drifted to an MWPC readout plane that allows it to be reconstructed in three dimensions, which can then be used to determine the direction that the WIMP came from.

Another way of detecting atoms "knocked about" by a WIMP is to use scintillating
Scintillator

A scintillator is a material which exhibits the property of luminescence when excited by ionizing radiation. Luminescent materials, when struck by an incoming particle, absorb its energy and scintillate, i.e....
 material, so that light pulses are generated by the moving atom. The DEAP
DEAP

DEAP is a direct dark matter search experiment using liquid argon as target material. DEAP utilizes background discrimination based on the characteristic scintillation pulse shape in argon....
 experiment plans to instrument a very large target mass of liquid argon for a sensitive WIMP search at SNOLAB
Snolab

SNOLAB is a Canada underground physics laboratory under construction at a depth of 2 km in Greater Sudbury, Ontario in Vale Inco's Creighton Mine nickel Mining....
. Another example of this technique is the DAMA/NaI
DAMA/NaI

The DAMA/NaI experiment was designed to detect dark matter using the direct detection technique. It was located at the Laboratori Nazionali del Gran Sasso in Italy and collected data during the period 1996-2002....
 and DAMA/LIBRA
DAMA/LIBRA

The DAMA/LIBRA experiment was designed to detect dark matter using the direct detection technique. It is located at the Laboratori Nazionali del Gran Sasso in Italy....
 detector in Italy
Italy

Italy , officially the Italian Republic , is a country located on the Italian Peninsula in Southern Europe and on the two largest islands in the Mediterranean Sea, Sicily and Sardinia....
. It uses multiple materials to identify false signals from other light-creating processes. This experiment observed an annual
Year

A year is the time between two recurrences of an event related to the orbit of the Earth around the Sun. By extension, this can be applied to any planet: for example, a "Martian year" is the time in which Mars completes its own orbit....
 change in the rate of signals in the detector. This annual modulation is one of the predicted signatures of a WIMP signal, and on this basis the DAMA collaboration has claimed a positive detection. Other groups, however, have not confirmed this result. The CDMS and EDELWEISS experiments would be expected to observe a significant number of WIMP-nucleus scatters if the DAMA signal were in fact caused by WIMPs. Since the other experiments do not see these events, the interpretation of the DAMA result as a WIMP detection can be excluded for most WIMP models. It is possible to devise models that reconcile a positive DAMA result with the other negative results, but as the sensitivity of other experiments improves, this becomes more difficult. The CDMS data taken in the Soudan Mine and made public in May 2004 exclude the entire DAMA signal region given certain standard assumptions about the properties of the WIMPs and the dark matter halo.

See also

  • MACHO
    Macho

    Macho can refer to:*The property of being overtly masculinity, hence the Spanish word Machismo*Massive compact halo object , a general name for any kind of astronomical body that might explain the apparent presence of dark matter in galaxy halos....


External links

  • in Living Reviews in Relativity, Vol 5, 2002


Experiments