TY - JOUR
T1 - Unraveling the Structure of Λ Hyperons with Polarized Λ Λ ¯ Pairs
AU - Ablikim, M.
AU - Achasov, M. N.
AU - Adlarson, P.
AU - Ai, X. C.
AU - Kabana, S.
AU - The BESIII collaboration
N1 - Publisher Copyright:
© 2025 authors. Published by the American Physical Society. Published by the American Physical Society under the terms of the "https://creativecommons.org/licenses/by/4.0/"Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI. Funded by SCOAP3.
PY - 2025/11/7
Y1 - 2025/11/7
N2 - With data collected in a dedicated energy scan from 2.3864 up to 3.0800 GeV, the BESIII Collaboration provides the first complete energy-dependent measurements of the Λ electromagnetic form factors in the timelike region. By combining double-tag and single-tag events from the e+e-→ΛΛ¯→pπ-p¯π+ reaction, we achieve a complete decomposition of the spin structure of the reaction at five energy points, with high statistical and systematic precision. Our data reveal that while the modulus of the ratio between the electric and magnetic form factor, R(q2)=|GE(q2)/GM(q2)|, remains fairly constant across the considered energy range, the relative phase Δφ(q2)=φE(q2)-φM(q2) changes by more than 90° between 2.396 and 2.6544 GeV. Using a fit to our data based on dispersion relations, the complex form factor ratio is determined as a function of q2, and the preferred solution has multiple zero-crossings in the complex plane. From the derivative of the ratio at q2=0, the root-mean-squared charge radius of the Λ is obtained. The two most probable solutions yield a negative root-mean-squared charge radius, indicating an asymmetric charge distribution where the ds quark pair lies close to the center of the Λ hyperon.
AB - With data collected in a dedicated energy scan from 2.3864 up to 3.0800 GeV, the BESIII Collaboration provides the first complete energy-dependent measurements of the Λ electromagnetic form factors in the timelike region. By combining double-tag and single-tag events from the e+e-→ΛΛ¯→pπ-p¯π+ reaction, we achieve a complete decomposition of the spin structure of the reaction at five energy points, with high statistical and systematic precision. Our data reveal that while the modulus of the ratio between the electric and magnetic form factor, R(q2)=|GE(q2)/GM(q2)|, remains fairly constant across the considered energy range, the relative phase Δφ(q2)=φE(q2)-φM(q2) changes by more than 90° between 2.396 and 2.6544 GeV. Using a fit to our data based on dispersion relations, the complex form factor ratio is determined as a function of q2, and the preferred solution has multiple zero-crossings in the complex plane. From the derivative of the ratio at q2=0, the root-mean-squared charge radius of the Λ is obtained. The two most probable solutions yield a negative root-mean-squared charge radius, indicating an asymmetric charge distribution where the ds quark pair lies close to the center of the Λ hyperon.
UR - https://www.scopus.com/pages/publications/105022761516
U2 - 10.1103/9f1h-fl4k
DO - 10.1103/9f1h-fl4k
M3 - Article
C2 - 41269939
AN - SCOPUS:105022761516
SN - 0031-9007
VL - 135
JO - Physical Review Letters
JF - Physical Review Letters
IS - 19
M1 - 191902
ER -