Office of Science U.S. Department of Energy U.S. Department of Energy’s Office of Science Dr. Raymond L. Orbach Under Secretary for Science U.S. Department.

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Presentation transcript:

Office of Science U.S. Department of Energy U.S. Department of Energy’s Office of Science Dr. Raymond L. Orbach Under Secretary for Science U.S. Department of Energy September 20, 2007 Budget and Facilities Presentation to the Basic Energy Sciences Advisory Committee (BESAC)

Office of Science U.S. Department of Energy 2 Office of Science FY 2008 Budget Request Status

Office of Science U.S. Department of Energy 3 Facilities for the Future of Science: A Twenty-Year Outlook In November, 2003 DOE’s Office of Science proposed a portfolio of 28 prioritized new scientific facilities and upgrades of current facilities spanning scientific disciplines to ensure the U.S. retains its primacy in critical areas of science and technology well into the next century. The Facilities for the Future of Science: A Twenty-Year Outlook was the first long-range facilities plan prioritized across disciplinary lines ever issued by a government science funding agency anywhere in the world. Significant progress has been made in implementing the plan and deploying many of the planned facilities. We have just finished an update on where we are at now in 2007.

Office of Science U.S. Department of Energy 4 The Prioritized Facilities List

Facilities For the Future: 20-Year Outlook – November 2003 Programs: ASCR = Advanced Scientific Computing Research BES = Basic Energy Sciences BER = Biological and Environmental Research FES = Fusion Energy Sciences HEP = High Energy Physics NP = Nuclear Physics

*Technology readiness changed # Changed due to planned facility abroad Status of Facilities For the Future: 20-Year Outlook – By the end of FY 2008

Office of Science U.S. Department of Energy 7 Comparing Facilities Portfolio With Europe’s Roadmap DOE Science plan Is a “bottoms up” & “top down” approach Includes prioritization across fields of science 28 facilities made the cut While some facilities are international, most would be entirely funded by the U.S. ESFRI Roadmap Is not a priority list Aim is to facilitate discussion to allow for coherent planning 35 facilities made the cut Each facility supported by at least one European Member and has great potential at pan-European level

Social Sciences & Humanities Environmental Sciences Energy Biomedical & Life Sciences Material Sciences Astronomy, Astrophysics, Nuclear and Particle Physics** CDT European Roadmap for Research Infrastructures, Report 2006 (pg.8-9)

Office of Science U.S. Department of Energy 9 21 st Century Light Sources: An assessment of needs driven by new scientific opportunities The BES suite of storage-ring-based light sources is one of the largest and most scientifically productive complex of user facilities in the world, serving more than 8,500 users each year. The Linac Coherent Light Source at SLAC, the first hard x-ray, linac-based light source, will be added to this complex in FY It will be fully operational a year or two later. The National Synchrotron Light Source – II at BNL, an advanced ultra bright storage- ring-based light source, will be added to the complex a few years later, in approximately By 2015, with LCLS and NSLS-II newly operating, the youngest of today’s BES light sources will be approaching its 20 th birthday. Now is the time for DOE and the scientific community to begin the process of strategic planning for the 21 st century light sources that will be as impactful as today’s light sources and address the scientific needs of the community in the 21 st Century. The scientific opportunities and mission needs – as developed over the past five years in ten Basic Research Needs workshops and in the BESAC Grand Challenges study – are the major drivers for the specifications of new and upgraded light sources.

Office of Science U.S. Department of Energy 10 BESAC Charge Consider the characteristics of the next generation light sources that will address the scientific and technological challenges put for in the Basic Research Needs workshops reports and the BESAC Grand Challenge study and that will enable new and innovative ways of probing our material world in the 21 st Century. The characteristics to be specified are the standard ones used to describe light sources: wavelength, flux, brightness, emittance, coherence, pulse length, potential instrument suite, availability and reliability of the entire system, and user accessibility. The charge excludes consideration of the many specific pre-proposals or proposals for light sources that are currently being discussed in the community. However, the capabilities of various types of light sources (including lasers, storage-ring-based and linac-based light sources, or other types of light sources) should be evaluated against the preferred characteristics of the new light sources. Both upgrades and new facility concepts may be considered in this context. The work of the BESAC subcommittee should be reported to BESAC at its summer 2008 meeting.