Nuclear Physics
CONTACTS
PROGRAM GUIDELINES
Apply to PD 08-1232 in FastLane.
(standard Grant Proposal Guidelines) apply.)
As announced on May 21st, proposers must prepare and submit proposals to the National
Science Foundation (NSF) using the NSF FastLane system at
http://www.fastlane.nsf.gov/.
This approach is being taken to support efficient Grants.gov operations during this busy
workload period and in response to OMB direction guidance issued March 9, 2009. NSF will
continue to post information about available funding opportunities to Grants.gov FIND and
will continue to collaborate with institutions who have invested in system-to-system
submission functionality as their preferred proposal submission method. NSF remains
committed to the long-standing goal of streamlined grants processing and plans to
provide a web services interface for those institutions that want to use their
existing grants management systems to directly submit proposals to NSF.
Please be advised that the NSF Proposal & Award Policies & Procedures Guide (PAPPG) includes
revised guidelines to implement the mentoring provisions of the America COMPETES Act (ACA)
(Pub. L. No. 110-69, Aug. 9, 2007.) As specified in the ACA, each proposal that requests
funding to support postdoctoral researchers must include a description of the mentoring
activities that will be provided for such individuals. Proposals that do not comply
with this requirement will be returned without review (see the PAPP Guide Part I:
Grant Proposal Guide Chapter II for further information about the implementation of
this new requirement).
DUE DATES
Full Proposal Target Date: September 29, 2010
Last Wednesday in September, Annually Thereafter
It is expected that proposals arrive no later than the published Physics Division target date. In exceptional cases, proposers may arrange with the program office, in advance of the target date, for a specific submission date for their proposal, normally representing a delay of at most a few days.
SYNOPSIS
Supports research at the frontiers of nuclear science, including: properties and behavior of nuclei and nuclear matter under extreme conditions, and/or as they relate to astrophysical phenomena; the quark-gluon basis for the structure and dynamics of nuclear matter; phase transitions of nuclear matter from normal nuclear density and temperature to the predicted high-temperature quark-gluon plasma; and basic interactions and fundamental symmetries. This research involves many venues, including low-energy to multi-GeV electrons and photons; intermediate-energy light ions; low-energy to relativistic heavy ions, including radioactive beams; cold and ultra-cold neutrons; as well as non-accelerator-based experiments.
The program supports university user groups executing experiments at a large number of laboratories in the United States and abroad, and a national user facility: the National Superconducting Cyclotron Laboratory, a superconducting, heavy-ion cyclotron facility at Michigan State University. The program also supports smaller accelerator facilities, such as those at Florida State University and the University of Notre Dame.
RELATED URLS
Newest Link to FastLane
Abstracts of Recent Awards Made Through This Program
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