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sphenix-emcal-l - Re: [Sphenix-emcal-l] Apply for submitting abstract "sPHENIX EMCal Module Prototyping and Production Plan in China" to Quark Matter 2019

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Subject: sPHENIX EMCal discussion

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  • From: Gunther M Roland <rolandg AT mit.edu>
  • To: "purschke AT bnl.gov" <purschke AT bnl.gov>
  • Cc: "sphenix-emcal-l AT lists.bnl.gov" <sphenix-emcal-l AT lists.bnl.gov>
  • Subject: Re: [Sphenix-emcal-l] Apply for submitting abstract "sPHENIX EMCal Module Prototyping and Production Plan in China" to Quark Matter 2019
  • Date: Wed, 26 Jun 2019 07:54:06 +0000

You should be able to add them to the dropbox paper.

Gunther


On Jun 26, 2019, at 2:20 PM, Martin Purschke <purschke AT bnl.gov> wrote:

Hi Gunther,

are Dave and you monitoring the various lists and collect the abstracts,
or are we supposed to upload them to dropbox (not sure we can). What is
the submission process for an abstract to you?

Best,
Martin


On 6/26/19 02:14, Gunther M Roland wrote:
Thanks for preparing the abstract! I'll let the EMCAL experts comment on
the details and how this first other possible calorimeter-related
abstracts. Just want to make sure there's no misunderstanding regarding
submission - Dave and I will submit all abstracts on behalf of the
collaboration. 

Best,

Gunther


On Jun 26, 2019, at 11:48 AM, Weihu Ma <maweihu AT fudan.edu.cn
<mailto:maweihu AT fudan.edu.cn>> wrote:

Dear All,

The following is the abstract we are planning to submit to the Quark
Matter 2019. Please review it.

Title: sPHENIX EMCal Module Prototyping and Production Plan in China
Possible Presenter: Weihu Ma
Abstract: The sPHENIX experiment is a next generation of large
acceptance detector at RHIC whose scientific goals center on probing
the strongly interacting Quark-Gluon Plasma (QGP) with jets, heavy
flavor tagged jets and Upsilon production. The EMCal detector is an
essential subsystem for these measurements. The Chinese sPHENIX EMCal
Consortium includes groups from Fudan, PKU and CIAE. The Chinese
Consortium plans to build the sPHENIX EMCal modules covering the
pseudo-rapidity region of 0.8-1.1, approximately 20% of the EMCal
modules. The extension of the pseudo-rapidity coverage can greatly
enhance the physics capability for jets and Upsilon measurements. We
will show the status of Chinese prototyping project including
investigations on the quality of Tungsten powder from Chinese vendors
and the quality assurance procedures under development. We will also
report on the status of our development of an automatic fiber filing
machine.

Sincerely,
Weihu Ma


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-- 
Martin L. Purschke, Ph.D.        ;   purschke AT bnl.gov
                                ;   http://www.phenix.bnl.gov/~purschke
                                ;
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Physics Department Bldg 510 C    ;   fax:   +1-631-344-3253
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