<p>Strong interactions preserve an approximate isospin symmetry between up (<i>u</i>) and down (<i>d</i>) quarks, part of the more general flavor symmetry. In the case of <i>K</i> meson production, if this isospin symmetry were exact, it would result in equal numbers of charged (<i>K</i><sup>+</sup> and <i>K</i><sup>−</sup>) and neutral (<i>K</i><sup>0</sup> and <InlineEquation ID="IEq1"> <InlineMediaObject> <ImageObject Color="BlackWhite" FileRef="41467_2025_57234_Article_IEq1.gif" Format="GIF" Height="21" Rendition="HTML" Resolution="72" Type="Linedraw" Width="23" /> </InlineMediaObject> <EquationSource Format="TEX">\({\overline{K}}^{0}\)</EquationSource> <EquationSource Format="MATHML"><math> <msup> <mrow> <mover accent="true"> <mrow> <mi>K</mi> </mrow> <mo accent="true">¯</mo> </mover> </mrow> <mrow> <mn>0</mn> </mrow> </msup> </math></EquationSource> </InlineEquation>) mesons produced in collisions of isospin-symmetric atomic nuclei. Here, we report results on the relative abundance of charged over neutral <i>K</i> 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 <i>K</i><sup>+</sup> and <i>K</i><sup>−</sup> mesons at mid-rapidity is (18.4&#xa0;±&#xa0;6.1)% higher than that of the neutral <i>K</i> mesons. Although with large uncertainties, earlier data on nucleus-nucleus collisions in the collision center-of-mass energy range <InlineEquation ID="IEq2"> <InlineMediaObject> <ImageObject Color="BlackWhite" FileRef="41467_2025_57234_Article_IEq2.gif" Format="GIF" Height="19" Rendition="HTML" Resolution="72" Type="Linedraw" Width="147" /> </InlineMediaObject> <EquationSource Format="TEX">\(2.6 \, &lt; \, \sqrt{{s}_{NN}} \, &lt; \, 200\)</EquationSource> <EquationSource Format="MATHML"><math> <mn>2.6</mn> <mspace width="0.25em" /> <mo>&lt;</mo> <mspace width="0.25em" /> <msqrt> <mrow> <msub> <mrow> <mi>s</mi> </mrow> <mrow> <mi>N</mi> <mi>N</mi> </mrow> </msub> </mrow> </msqrt> <mspace width="0.25em" /> <mo>&lt;</mo> <mspace width="0.25em" /> <mn>200</mn> </math></EquationSource> </InlineEquation> 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 4.7<i>σ</i> 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.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Evidence of isospin-symmetry violation in high-energy collisions of atomic nuclei

  • H. Adhikary,
  • P. Adrich,
  • K. K. Allison,
  • N. Amin,
  • E. V. Andronov,
  • I. -C. Arsene,
  • M. Bajda,
  • Y. Balkova,
  • D. Battaglia,
  • A. Bazgir,
  • S. Bhosale,
  • M. Bielewicz,
  • A. Blondel,
  • M. Bogomilov,
  • Y. Bondar,
  • A. Brandin,
  • W. Bryliński,
  • J. Brzychczyk,
  • M. Buryakov,
  • A. F. Camino,
  • M. Ćirković,
  • M. Csanád,
  • J. Cybowska,
  • T. Czopowicz,
  • C. Dalmazzone,
  • N. Davis,
  • A. Dmitriev,
  • P. von Doetinchem,
  • W. Dominik,
  • J. Dumarchez,
  • R. Engel,
  • G. A. Feofilov,
  • L. Fields,
  • Z. Fodor,
  • M. Friend,
  • M. Gaździcki,
  • O. Golosov,
  • V. Golovatyuk,
  • M. Golubeva,
  • K. Grebieszkow,
  • F. Guber,
  • S. N. Igolkin,
  • S. Ilieva,
  • A. Ivashkin,
  • A. Izvestnyy,
  • N. Kargin,
  • N. Karpushkin,
  • E. Kashirin,
  • M. Kiełbowicz,
  • V. A. Kireyeu,
  • R. Kolesnikov,
  • D. Kolev,
  • Y. Koshio,
  • V. N. Kovalenko,
  • S. Kowalski,
  • B. Kozłowski,
  • A. Krasnoperov,
  • W. Kucewicz,
  • M. Kuchowicz,
  • M. Kuich,
  • A. Kurepin,
  • A. László,
  • M. Lewicki,
  • G. Lykasov,
  • V. V. Lyubushkin,
  • M. Maćkowiak-Pawłowska,
  • Z. Majka,
  • A. Makhnev,
  • B. Maksiak,
  • A. I. Malakhov,
  • A. Marcinek,
  • A. D. Marino,
  • H. -J. Mathes,
  • T. Matulewicz,
  • V. Matveev,
  • G. L. Melkumov,
  • A. Merzlaya,
  • Ł. Mik,
  • S. Morozov,
  • Y. Nagai,
  • T. Nakadaira,
  • M. Naskret,
  • S. Nishimori,
  • A. Olivier,
  • V. Ozvenchuk,
  • O. Panova,
  • V. Paolone,
  • O. Petukhov,
  • I. Pidhurskyi,
  • R. Płaneta,
  • P. Podlaski,
  • B. A. Popov,
  • B. Pórfy,
  • D. S. Prokhorova,
  • D. Pszczel,
  • S. Puławski,
  • J. Puzović,
  • R. Renfordt,
  • L. Ren,
  • V. Z. Reyna Ortiz,
  • D. Röhrich,
  • E. Rondio,
  • M. Roth,
  • Ł. Rozpłochowski,
  • B. T. Rumberger,
  • M. Rumyantsev,
  • A. Rustamov,
  • M. Rybczynski,
  • A. Rybicki,
  • D. Rybka,
  • K. Sakashita,
  • K. Schmidt,
  • A. Y. Seryakov,
  • P. Seyboth,
  • U. A. Shah,
  • Y. Shiraishi,
  • A. Shukla,
  • M. Słodkowski,
  • P. Staszel,
  • G. Stefanek,
  • J. Stepaniak,
  • M. Strikhanov,
  • H. Ströbele,
  • T. Šuša,
  • Ł. Świderski,
  • J. Szewiński,
  • R. Szukiewicz,
  • A. Taranenko,
  • A. Tefelska,
  • D. Tefelski,
  • V. Tereshchenko,
  • R. Tsenov,
  • L. Turko,
  • T. S. Tveter,
  • M. Unger,
  • M. Urbaniak,
  • F. F. Valiev,
  • D. Veberič,
  • V. V. Vechernin,
  • O. Vitiuk,
  • V. Volkov,
  • A. Wickremasinghe,
  • K. Witek,
  • K. Wójcik,
  • O. Wyszyński,
  • A. Zaitsev,
  • E. Zherebtsova,
  • E. D. Zimmerman,
  • A. Zviagina,
  • R. Zwaska,
  • F. Giacosa,
  • M. Gorenstein,
  • R. Poberezhniuk,
  • S. Samanta

摘要

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 \({\overline{K}}^{0}\) K ¯ 0 ) mesons produced in collisions of isospin-symmetric atomic nuclei. 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)% 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 \(2.6 \, < \, \sqrt{{s}_{NN}} \, < \, 200\) 2.6 < s N N < 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.