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star-fcv-l - [Star-fcv-l] 回覆: STAR presentation by Han-Sheng Li for Quark Matter 2023 got commented by Prithwish Tribedy

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Subject: STAR Flow, Chirality and Vorticity PWG

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  • From: Han-sheng Li <li3924 AT purdue.edu>
  • To: "webmaster AT star.bnl.gov" <webmaster AT star.bnl.gov>, "STAR Flow, Chirality and Vorticity PWG" <star-fcv-l AT lists.bnl.gov>
  • Subject: [Star-fcv-l] 回覆: STAR presentation by Han-Sheng Li for Quark Matter 2023 got commented by Prithwish Tribedy
  • Date: Wed, 3 May 2023 04:17:37 +0000

Dear Prithwish,

Thanks for your comments.
We uploaded the updated abstract in the following link:
https://drupal.star.bnl.gov/STAR/presentations/Quark-Matter-2023/Search-Chiral-Magnetic-Effect-Event-Shape-Engineering-Function-Invar

Best regards,
Han-Sheng

寄件者: Star-fcv-l <star-fcv-l-bounces AT lists.bnl.gov> 代表 webmaster--- via Star-fcv-l <star-fcv-l AT lists.bnl.gov>
寄件日期: 2023年5月2日 下午 02:59
收件者: star-fcv-l AT lists.bnl.gov <star-fcv-l AT lists.bnl.gov>
主旨: [Star-fcv-l] STAR presentation by Han-Sheng Li for Quark Matter 2023 got commented by Prithwish Tribedy
 
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Dear star-fcv-l AT lists.bnl.gov members,

Prithwish Tribedy ( ptribedy AT bnl.gov ) has commented on a material originally
submitted by Han-Sheng Li ( li3924 AT purdue.edu ) at
https://drupal.star.bnl.gov/STAR/presentations/Quark-Matter-2023/Search-Chiral-Magnetic-Effect-Event-Shape-Engineering-Function-Invar

Comment:
Second round of comments with attempt to incorporate the comments from CME
focus group experts:
I suggest we revise line 11-16 as follows:
"In this contribution, we report a fresh investigation of charge separation
in Au+Au collisions at $\sqrt{s_{\rm NN}}=200$ GeV​​=200 GeV with the
STAR detector using the Event Shape Engineering (ESE) approach [1]. Our
approach has several novel aspects, such as using three subevents of the time
projection chamber (TPC) to identify dynamical fluctuations of $v_2$​ by
excluding particles of interest from the ESE selection. Since the chiral
magnetic effect (CME) is a low-pT phenomenon, we further analyze ESE
differentially as a function of the pair invariant mass ($m_{inv}$),
particularly at lower $m_{inv}$, which is dominated by a larger fraction of
low-$p_T$ pions."

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