Revolution in standard model: is the isospin symmetry of strong interactions really violated at quark level?
Phys.org’s popular article (see this) tells about a rather surprising finding related to strong interactions. In QCD isospin symmetry is assumed, and the strong interactions in heavy ion collisions should produce equal amounts of charged and neutral kaons. The anomaly was discovered in late 2023, by Wojciech Brylinski who was analyzing data from the NA61/SHINE collaboration at CERN for his thesis. There was a strikingly large imbalance between charged and neutral kaons in argon scandium collisions. Brylinski found that, instead of being produced in roughly equal numbers, charged kaons were produced 18.4 percent more often than neutral kaons. Now this anomaly has been confirmed. NA61/SHINE’s data in collisions with 11.9 GeV per nucleon pair (see this) contradicts the hypothesis of equal yields with a 4.7σ significance.
Unless electromagnetic interactions violating the isospin symmetry manage to cause the isospin asymmetry, the key assumption of QCD that electroweak and color interactions are independent, is wrong. Needless to say, this would mean a revolution in the standard model. Here is the abstract of the article.
Strong interactions preserve an approximate isospin symmetry between up (u) and down (d) quarks, part of the more general flavor symmetry. In the case of K meson production, if this isospin symmetry were exact, it would result in equal numbers of charged (K+ and K-) and neutral (K0 and K0) mesons in the final state. Here, we report results on the relative abundance of charged over neutral K meson production in argon and scandium nuclei collisions at a center-of-mass energy of 11.9 GeV per nucleon pair.
We find that the production of K+ and K+ mesons at mid-rapidity is (18.4+/- 6.1) per cent higher than that of the neutral K mesons. Although with large uncertainties, earlier data on nucleus-nucleus collisions in the collision center-of-mass energy range 2.6≤sNN1/2≤ 200 GeV are consistent with the present result. Using well-established models for hadron production, we demonstrate that known isospin-symmetry breaking effects and the initial nuclei containing more neutrons than protons lead only to a small (few percent) deviation of the charged-to-neutral kaon ratio from unity at high energies. Thus, they cannot explain the measurements.
The significance of the flavor-symmetry violation beyond the known effects is 4.7σ when the compilation of world data with uncertainties quoted by the experiments is used. New systematic, high-precision measurements and theoretical efforts are needed to establish the origin of the observed large isospin-symmetry breaking.
The basic prediction of TGD is that color and electroweak interactions are strongly correlated. Could one understand the anomaly in the TGD framework?
- At the fundamental level, both classical electroweak, color and gravitational fields are geometrized (see this and this). Once the space-time as a 4-surface in H=M4× CP2 is known, all these classical fields are fixed. This choice is unique also from the existence of the twistor lift of the theory: M4 and CP2 are the only 4-D spaces allowing twistor space with K”ahler structure. Also the number theoretical vision, involving what I call M8-H duality (see this), allows only H.
By general coordinate invariance at the level of H, 4 coordinates of H fix these classical fields so that very strong correlations between classical fields emerge. In particular, electroweak and color fields are strongly correlated. This means a profound difference from QCD.
- The construction of quantum TGD as a geometrization of physics leads to the notion of World of Classical Worlds (WCW) consisting of space-time surfaces in H obeying holography necessary for getting rid of path integral plagued by divergences. Holography means that 3-D data -a 3-surface – fixes the space-time surface as analog of Bohr orbit for 3-D particles so that in geometric degrees of freedom TGD is essentially wave mechanics for 3-D particles.
WCW spinors correspond to Fock states for the second quantized fermions of H and gamma matrices are super generators for the infinite-D symmetries of WCW. A huge generalization of conformal symmetries of string models and symplectic symmetries for H is involved.
Conformal symmetries emerge from holography= holomorphy vision leading to an exact solvability of classical TGD. Space-time surfaces are roots for pairs f=(f1,f2) of analytic functions H→ C2 of one hypercomplex coordinate and 3 complex coordinates of H. The field equations are extremely nonlinear partial differential equations but reduce to purely algebraic equations. As long as the classical action is general coordinate invariant and depends only on the induced fields, the space-time surfaces are minimal surfaces irrespective of the choice of the action. The maps g=(g1,g2): C2→ C2 act as dynamical symmetries. The hierarchies of polynomials in extensions E of rationals define hierarchies of solutions of field equations.
Both the pairs (f1,f2) and (g1,g2) allow to identify candidates for p-adic primes as analogs of ramified primes associated with algebraic extensions of E, in particular those of rationals. How does the TGD view of standard model interactions differ from the standard model view?
- The basic difference at the level of H spinor fields is that color quantum numbers are not spin-like but are replaced with color partial waves in CP2. Color degrees of freedom are analogous to the rotational degrees of freedom of a rigid body. An infinite number of color partial waves emerges for both quarks and leptons. In TGD, color and electroweak degrees of freedom are strongly correlated as is also clear from the fact that color symmetries correspond to the non-broken symmetries as isometries of CP2 and electroweak symmetries correspond to the holonomies of CP2, which are automatically broken gauge symmetries.
The spectrum of color partial waves is different for U and D type quarks and for charged leptons and neutrinos. The triality of the partial wave is zero for leptons and 1 resp. -1 for quarks resp. antiquarks. At the level of fundamental fermions, which do not correspond as such to fermions as elementary particles, there is a strong violation of isospin symmetry.
Elementary particles correspond to closed monopole flux tubes as analogs of hadronic strings connecting two Minkowskian space-time sheets by Euclidean wormhole contacts. The light-like orbits of wormhole throats (partonic orbits) carry fermions and antifermions at light curves which define boundaries of Minkowskian string world sheets.
The proposal is that the wormhole throats also contain pairs of left- and right-handed neutrinos implying that the total electroweak quantum numbers of the string-like closed monopole flux tube representing hadron vanishes. This would make the weak interactions short ranged with range determined by the length of the string-like object.
p-Adic length scale hypothesis suggests that the p-adic mass scales satisfy m(d)/m(u)=2 so that p(d)/p(u)=1/4 and k(d)= k(u)-2. For electron the p-adic mass scale corresponds to the Mersenne prime M127= 2127-1 with k(e)=127. m(u)∼ 4me suggests k(u)=127-4=123 and k(d)=k(u)-2= 121.
- The formation of K+=us and K0= ds involves strong interaction and therefore exchange of gluons between u and s for K+ and d and s for K0. The emission vertex is proportional to αs. In TGD, the gluon corresponds to a superposition of uu, dd pairs and also pairs of higher quark generations. Only the ud couples to K+ and dd couples to K0 in the vertex. The gluon exchange vertex is analogous to a vertex for the annihilation of gluon to a fermion pair and the different p-adic length scales for u and d imply that the analog of QCD coupling strength αs is different ud and dd.
- For general coupling constant evolution the dependence of length scale is logarithmic. The amplitude for the exchange of gluon characterized by αs should be larger for uuug vertex than ddg vertez. The p-adic length scale for u should be by a factor 2 longer than for u. If the coupling constant is proportional to the logarithm, one has αs propto log2(p(q))= k(q). This would give for the ratio Δ gs/gs(u)= (Δ gs(u)-gs (d))/gs(u) the estimate Δ gs/gs(u)∼eq (k(u)-k(d))/k(u)∼ 4/123∼ 3.3 percent. For αs this would give Δ αs/αs ∼ 6.6 per cent. This is roughly by a factor 1/3 times smaller than the empirical result 18.4 percent. k(u)-k(d)= 2 → 6 giving k(d)= 123-6=117 would produce a better result and give m(d)∼ 16 MeV. Could the non-perturbative character of strong interactions in the formation of mesons explain the discrepancy?
For a summary of earlier postings see Latest progress in TGD.
For the lists of articles (most of them published in journals founded by Huping Hu) and books about TGD see this.
Source: https://matpitka.blogspot.com/2025/03/revolution-in-standard-model-is-isospin.html
Anyone can join.
Anyone can contribute.
Anyone can become informed about their world.
"United We Stand" Click Here To Create Your Personal Citizen Journalist Account Today, Be Sure To Invite Your Friends.
Before It’s News® is a community of individuals who report on what’s going on around them, from all around the world. Anyone can join. Anyone can contribute. Anyone can become informed about their world. "United We Stand" Click Here To Create Your Personal Citizen Journalist Account Today, Be Sure To Invite Your Friends.
LION'S MANE PRODUCT
Try Our Lion’s Mane WHOLE MIND Nootropic Blend 60 Capsules
Mushrooms are having a moment. One fabulous fungus in particular, lion’s mane, may help improve memory, depression and anxiety symptoms. They are also an excellent source of nutrients that show promise as a therapy for dementia, and other neurodegenerative diseases. If you’re living with anxiety or depression, you may be curious about all the therapy options out there — including the natural ones.Our Lion’s Mane WHOLE MIND Nootropic Blend has been formulated to utilize the potency of Lion’s mane but also include the benefits of four other Highly Beneficial Mushrooms. Synergistically, they work together to Build your health through improving cognitive function and immunity regardless of your age. Our Nootropic not only improves your Cognitive Function and Activates your Immune System, but it benefits growth of Essential Gut Flora, further enhancing your Vitality.
Our Formula includes: Lion’s Mane Mushrooms which Increase Brain Power through nerve growth, lessen anxiety, reduce depression, and improve concentration. Its an excellent adaptogen, promotes sleep and improves immunity. Shiitake Mushrooms which Fight cancer cells and infectious disease, boost the immune system, promotes brain function, and serves as a source of B vitamins. Maitake Mushrooms which regulate blood sugar levels of diabetics, reduce hypertension and boosts the immune system. Reishi Mushrooms which Fight inflammation, liver disease, fatigue, tumor growth and cancer. They Improve skin disorders and soothes digestive problems, stomach ulcers and leaky gut syndrome. Chaga Mushrooms which have anti-aging effects, boost immune function, improve stamina and athletic performance, even act as a natural aphrodisiac, fighting diabetes and improving liver function. Try Our Lion’s Mane WHOLE MIND Nootropic Blend 60 Capsules Today. Be 100% Satisfied or Receive a Full Money Back Guarantee. Order Yours Today by Following This Link.
