Strange matter (or strange quark matter) is quark matter containing strange quarks. In nature, strange matter is hypothesized to occur in the core of neutron stars, or, more speculatively, as isolated droplets that may vary in size from femtometers (strangelets) to kilometers, as in the hypothetical strange stars. Dark matter, antimatter or exotic matter are some examples… and, without a doubt, among all the new theoretical types of matter, the least known and most radically different would be strange matter, as it would literally break our laws of physics. Strange Matter could possibly be the most dangerous substance on the universe. It is often found in the core of a neutron star. A neutron star is the densest thing in existence other then black holes and a matter called strange matter is found in the centre. Odd geometric shapes can be produced with the quark-gluon plasma created in the PHENIX Detector particle collider. Physicists at the University of Colorado have created tiny blobs of the bizarre liquid-like matter that filled the Universe milliseconds after the Big Bang. Astronomers have identified about a half dozen exoplanets that may be made of an exotic matter known as “strange matter” unknown on Earth. The atoms that make up conventional matter have nuclei made of protons and neutrons, and protons and neutrons are composed of subatomic particles called quarks. Strange matter comes about as a way to relieve degeneracy pressure. The Pauli exclusion principle forbids fermions such as quarks from occupying the same position and energy level. A strangelet (pronounced strange-let) is a hypothetical particle consisting of a bound state of roughly equal numbers of up, down, and strange quarks. An equivalent description is that a strangelet is a small fragment of strange matter, small enough to be considered a particle. The first strange particle (a particle containing a strange quark) was discovered in 1947 (kaons), but the existence of the strange quark itself (and that of the up and down quarks) was only postulated in 1964 by Murray Gell-Mann and George Zweig to explain the eightfold way classification scheme of hadrons. Perhaps "strangelet bomb" refers to the effect of using strangelets and they are actually delivered through some sort of particle cannon. – VLAZ. Dec 19, 2019 at 7:00. If the strange matter is electrically charged then we can repel it magnetically. At the hyper-pressurized core of neutron star, a trio of up, down and strange quarks can join force to form strange matter, an exotic material with the perfect density and stability, and immune to any type of erosion or damage.
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