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HFT Project Overview

Review of the HFT Project, including compelling science, proposed detector capabilities, major milestones, optimal technology, and collaboration details.

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HFT Project Overview

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  1. HFT Project Overview CD0 Review H.G. Ritter LBNL

  2. Compelling science • Elementary charm cross-sections • Parton energy loss • Charm flow and thermalization CD0 Review

  3. Justification • In the first part we have shown • Compelling science • Proposed detector can do necessary measurements • In the second part we will show • Properties of detector • How we build it • We have the team and the organization to build it CD0 Review

  4. Major Milestones • List all the previous reviews CD0 Review

  5. Definition STAR Tracking Upgrade to identify D and B mesons through measurement of the displaced vertex CD0 Review

  6. Optimal technology • New pixel technology • Resolution • Low material budget • Proven strip technology • Experience • Cost effective CD0 Review

  7. PIXEL • 2 layers of 30x30 m pixels at 2.5 and 8 cm radius • Very thin material budget to limit multiple scattering • Data reduction and formatting on chip • Rapid insertion and removal • Precision positioning • Air cooling CD0 Review

  8. PIXEL CD0 Review

  9. Patch for run 11 CD0 Review

  10. IST • One layer of single sided strips (pads) at a radius of 14 cm • Conventional and proven technology • MIT expertise CD0 Review

  11. IST CD0 Review

  12. SSD • Existing detector • Needs upgrade and TLC CD0 Review

  13. Collaboration • BNL:C. Chasman, D. Beavis, R. Debbe, J.H. Lee, M.J. Levine, F. Videbaek, Z. Xu • UCLA:R. Cendejas, H. Huang, S. Sakai, C. Whitten • Kent State:J. Joseph, D. Keane, S. Margetis, V. Rykov, W.M. Zhang • Prague:M. Bystersky, J. Kapitan, V. Kushpil, M. Sumbera • Strasbourg:J. Baudot, C. Hu-Guo, A. Shabetai, M. Szelezniak, M. Winter • MIT:J. Kelsey, R. Milner, M. Plesko, R. Redwine, F. Simon, B. Surrow, G. Van Nieuwenhuizen • LBNL:E. Anderssen, X. Dong, L. Greiner, H.S. Matis, S. Morgan, H.G. Ritter, A. Rose, E. Sichtermann, R.P. Singh, T. Stezelberger, X. Sun, J.H. Thomas, V. Tram, C. Vu, H.H. Wieman, N. Xu • Purdue:A. Hirsch, B. Srivastava, F. Wang, W. Xie • U. Washington:H. Bichsel CD0 Review

  14. HFT Management Structure DOE BNL LBNL HFT Project Management Contract Project Manager: HG Ritter (acting) LBNL Deputy, Contract Project Manager: RP Singh LBNL Deputy, Contract Project Manager: F. Videbaek BNL STAR Spokesperson: T. Hallman Upgrade coord: R. Majka Safety Coordinator TBD Pixel Det. Wieman LBNL Anderssen LBNL SSD Liaison J. Thomas LBNL Software S. Margetis KSU IST B. Surrow MIT J. Kelsey MIT Integration F. Videbaek BNL J. Kelsey MIT Management Structure CD0 Review

  15. HFT Technical Committee Ritter - Project Manager Singh - Deputy Project Manager Morgan - Budget Videbaek - Integration Wieman - Pixel Anderssen - Pixel, Integration Surrow - IST Kelsey - IST, Integration Thomas - SSD Liaison Margetis - Software Hallman - STAR Majka - STAR Weekly meetings, change control CD0 Review

  16. Risk Management • APS Sensor depending on Strasbourg pace of development • Push for early prototype, get involved in testing and design • Kinematic mount and low weight ladder challenging • Solve problem in the R+D phase • SSD is essential • Get involved in upgrade and running of SSD, design some redundancy into IST • HFT might become operational late • Build patch to test design and get early measurement CD0 Review

  17. Cost CD0 Review

  18. Proposed Schedule CD0 Review

  19. Summary • Compelling Science • A detector • That can deliver the science • Has the right mix of new and proven technology • A team and an organization • That can build the detector • That will extract the science in a timely fashion CD0 Review

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