Thomas Markiewicz
SLAC National Accelerator Laboratory
5 Papers
6 Citations
Thomas Markiewicz is an academic researcher from SLAC National Accelerator Laboratory. The author has contributed to research in topics: International Linear Collider & Collider. The author has an hindex of 2, co-authored 5 publications.
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Papers
•Posted Content
C$^3$: A "Cool" Route to the Higgs Boson and Beyond
Mei Bai,Tim Barklow,R. Bartoldus,Martin Breidenbach,Philippe Grenier,Zhirong Huang,Michael Kagan,John W. Lewellen,Zenghai Li,Thomas Markiewicz,Emilio A. Nanni,Mamdouh Nasr,C. Ng,M. Oriunno,Michael E. Peskin,Thomas G. Rizzo,James Rosenzweig,Ariel Schwartzman,Vladimir Shiltsev,Evgenya I. Simakov,Bruno Spataro,Dong Su,Sami Tantawi,Caterina Vernieri,Glen White,C. C. Young +25 more
TL;DR: In this article, a cold copper distributed coupling accelerator is proposed to provide a rapid route to precision Higgs physics with a compact 8 km footprint, based on recent advances that increase the efficiency and operating gradient of a normal conducting accelerator.
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•Posted Content
Updating the SiD Detector concept
Martin Breidenbach,J. E. Brau,Philip Burrows,Thomas Markiewicz,Marcel Michael Stanitzki,Jan Strube,A. P. White +6 more
TL;DR: The SiD Detector is one of two detector designs for the future International Linear Collider (ILC) that were validated in 2012 and features a compact, cost-constrained design for precision Higgs and other measurements, and sensitivity to a wide range of possible new phenomena as discussed by the authors.
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Initial results of a silicon sensor irradiation study for ILC extreme forward calorimetry
Reyer Band,Vitaliy Fadeyev,R. Clive Field,Spencer Key,Tae Sung Kim,Thomas Markiewicz,F. Martinez-Mckinney,T. Maruyama,Khilesh Mistry,Ravi Nidumolu,Bruce Schumm,E. Spencer,Conor Timlin,Max Wilder +13 more
TL;DR: In this article, the results of SLAC Experiment T-506 were reported, for which several different types of silicon diode sensors were exposed to doses of radiation induced by showering electrons of energy 3.5-10.6
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Budgeting and control of the mechanical noise in the International Linear Collider final focus system
TL;DR: In this paper, a simplified vibration model of the silicon detector is presented, where the final doublet (QD0) is captured inside the detector and the penultimate magnet (QF1) is inside the machine tunnel.
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