English

Analysis of OPAL Bose-Einstein Correlation at $Z^0$-pole by the second conventional formula

High Energy Physics - Phenomenology 2022-11-23 v2 High Energy Physics - Experiment Nuclear Theory

Abstract

We can obtain a second conventional formula (CFII{\rm CF_{II}}) with two components by extending the conventional formula CFI{\rm CF_{I}} with one component for Bose-Einstein Correlation (BEC). We used CFII{\rm CF_{II}} to analyze the BEC at Z0Z^0-pole as part of the OPAL collaboration. R1(G)=0.91±0.03R_1({\rm G})=0.91\pm 0.03 fm (λ1=0.61±0.03\lambda_1=0.61\pm 0.03) and R2(G)=2.57±0.44R_2({\rm G})=2.57\pm 0.44 fm (λ1=0.35±0.09\lambda_1=0.35\pm 0.09) are the estimated interaction region, where λ1\lambda_1 and λ2\lambda_2 are the degrees of coherence, and G is the Gaussian distribution, respectively. Long range correlation (LRC) is also studied.

Keywords

Cite

@article{arxiv.2110.03984,
  title  = {Analysis of OPAL Bose-Einstein Correlation at $Z^0$-pole by the second conventional formula},
  author = {Takuya Mizoguchi and Seiji Matsumoto and Minoru Biyajima},
  journal= {arXiv preprint arXiv:2110.03984},
  year   = {2022}
}