Difference between revisions of "2020 NSF Proposal"

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A1p&SIDIS
 
A1p&SIDIS
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K10Suited
  
 
=Project Summary=
 
=Project Summary=
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to study hadronic matter on a fundamental level at the Thomas Jefferson  
 
to study hadronic matter on a fundamental level at the Thomas Jefferson  
 
National Accelerator Facility and an outreach program targeting one of the most underrepresented groups in Nuclear physics.  
 
National Accelerator Facility and an outreach program targeting one of the most underrepresented groups in Nuclear physics.  
This proposal addresses the need to conduct new experiments motivated by the communities long range plans as well as the need to analyze and publish previous NSF sponsored measurements.  Each of the senior level participants has a  
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This proposal addresses the need to conduct new experiments motivated by the community's long range plans as well as the need to analyze and publish previous NSF sponsored measurements.  Each of the senior level participants has a  
 
history of intense involvement in the Jefferson Lab physics program and are co-spokespersons on experiments that will begin collecting data during the funding period.  
 
history of intense involvement in the Jefferson Lab physics program and are co-spokespersons on experiments that will begin collecting data during the funding period.  
 
As a result, the continued support will capitalize on the investments that have been made  
 
As a result, the continued support will capitalize on the investments that have been made  
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==Broader Impacts==
 
==Broader Impacts==
 
  
 
=Main Body=
 
=Main Body=
  
  
=current work=
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==current work==
  
 
responsible for moller shield design
 
responsible for moller shield design
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responsible for SIDIS analysis
 
responsible for SIDIS analysis
  
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==Results of Prior support==
  
=Results of Prior support=
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constructed R1 chambers for CLAS12
  
dual cell target
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polarized target cell target
  
 
vertex tracking
 
vertex tracking
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[[File:RT_PiMinusDeltaZ_10-18-19.png | 200 px]]
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[[File:RT_ElectronDeltaZ_10-18-19.png | 200 px]]
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[[File:RT_ElectronDeltaX_10-18-19.png | 200 px]]
  
 
[[NSF]]
 
[[NSF]]

Latest revision as of 20:57, 19 November 2019

Due Date Dec 3.


Call for proposals

https://www.nsf.gov/publications/pub_summ.jsp?WT.z_pims_id=505058&ods_key=nsf18564

https://identity.research.gov/sso/UI/Login?submit=Sign+In+to+FastLane%2FResearch.gov

A1p&SIDIS

K10Suited

Project Summary

We propose to continue series of measurements to study hadronic matter on a fundamental level at the Thomas Jefferson National Accelerator Facility and an outreach program targeting one of the most underrepresented groups in Nuclear physics. This proposal addresses the need to conduct new experiments motivated by the community's long range plans as well as the need to analyze and publish previous NSF sponsored measurements. Each of the senior level participants has a history of intense involvement in the Jefferson Lab physics program and are co-spokespersons on experiments that will begin collecting data during the funding period. As a result, the continued support will capitalize on the investments that have been made to upgrade JLab to a maximum beam energy of 12 GeV.

Intellectual Merit

The intermediate energy nuclear physics group at Idaho State University (ISU) has an established fundamental physics program, based at Jefferson Lab, to enhance our understanding of nucleons and nuclei. The CoPIs in this proposal are all co-spokespersons on experiments to perform measurements on the underlying symmetry and structure of the quark and gluon components of the nucleon and the characteristics of the skin or surface of a nucleus. Dr~Dustin McNulty is continuing his work using parity violation to precisely measure the neutron skin of lead and calcium, E12-12-004 and perform a new measurement of parity violating Moller scattering, INSERT EXPERIMENT ID. Dr.~Tony Forest is continuing a measurement of the down quark fractional polarization in the nucleon to test predictions of pQCD via JLab experiment E12-06-109. The above investigations continue to be key components of the National Science Advisory Council's long range plan of unfolding the quark structure of hadrons and testing the Standard Model.

Broader Impacts

Main Body

current work

responsible for moller shield design

responsible for SIDIS analysis

Results of Prior support

constructed R1 chambers for CLAS12

polarized target cell target

vertex tracking RT PiMinusDeltaZ 10-18-19.png RT ElectronDeltaZ 10-18-19.png RT ElectronDeltaX 10-18-19.png

NSF