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  2. Baryon number - Wikipedia

    en.wikipedia.org/wiki/Baryon_number

    Three antiquarks of different anticolors, giving an antibaryon with baryon number1. The baryon number was defined long before the quark model was established, so rather than changing the definitions, particle physicists simply gave quarks one third the baryon number. Nowadays it might be more accurate to speak of the conservation of quark ...

  3. List of mesons - Wikipedia

    en.wikipedia.org/wiki/List_of_mesons

    Mesons named with the letter "f" are scalar mesons (as opposed to a pseudo-scalar meson), and mesons named with the letter "a" are axial-vector mesons (as opposed to an ordinary vector meson) a.k.a. an isoscalar vector meson, while the letters "b" and "h" refer to axial-vector mesons with positive parity, negative C-parity, and quantum numbers I G of 1 + and 0 − respectively.

  4. List of baryons - Wikipedia

    en.wikipedia.org/wiki/List_of_baryons

    These lists detail all known and predicted baryons in total angular momentum J = ⁠ 1 / 2 ⁠ and J = ⁠ 3 / 2 ⁠ configurations with positive parity. [5]Baryons composed of one type of quark (uuu, ddd, ...) can exist in J = ⁠ 3 / 2 ⁠ configuration, but J = ⁠ 1 / 2 ⁠ is forbidden by the Pauli exclusion principle.

  5. Quark model - Wikipedia

    en.wikipedia.org/wiki/Quark_model

    Mesons are hadrons with zero baryon number. If the quark–antiquark pair are in an orbital angular momentum L state, and have spin S, then | L − S | ≤ J ≤ L + S, where S = 0 or 1, P = (−1) L+1, where the 1 in the exponent arises from the intrinsic parity of the quark–antiquark pair. C = (−1) L+S for mesons which have no flavor.

  6. Meson - Wikipedia

    en.wikipedia.org/wiki/Meson

    Because quarks have a spin ⁠ 1 / 2 ⁠, the difference in quark number between mesons and baryons results in conventional two-quark mesons being bosons, whereas baryons are fermions. Each type of meson has a corresponding antiparticle (antimeson) in which quarks are replaced by their corresponding antiquarks and vice versa.

  7. Hadron spectroscopy - Wikipedia

    en.wikipedia.org/wiki/Hadron_spectroscopy

    QCD predicts that quarks and antiquarks bind into particles called mesons. Another type of hadron is called a baryon, that is made of three quarks. There is good experimental evidence for both mesons and baryons. Potentially QCD also has bound states of just gluons called glueballs.

  8. Exotic meson - Wikipedia

    en.wikipedia.org/wiki/Exotic_meson

    The ground state hybrid mesons 0 −+, 1 −+, 1 −−, and 2 −+ all lie a little below 2 GeV/c 2. The hybrid with exotic quantum numbers 1 −+ is at 1.9 ± 0.2 GeV/c 2. The best lattice computations to date are made in the quenched approximation, which neglects virtual quarks loops. As a result, these computations miss mixing with meson ...

  9. Pentaquark - Wikipedia

    en.wikipedia.org/wiki/Pentaquark

    As quarks have a baryon number of ⁠+ + 1 / 3 ⁠, and antiquarks of ⁠− + 1 / 3 ⁠, the pentaquark would have a total baryon number of 1, and thus would be a baryon. Further, because it has five quarks instead of the usual three found in regular baryons (a.k.a. "triquarks"), it is classified as an exotic baryon.