PPT-Towards simulation of electric fields in silicon detectors

Author : phoebe-click | Published Date : 2016-12-13

Hrvoje Štefančić Theoretical Physics Division Ruđer Bošković Institute based on joint work with Hrvoje Abraham and Predrag Lazić Electric field strength

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Towards simulation of electric fields in silicon detectors: Transcript


Hrvoje Štefančić Theoretical Physics Division Ruđer Bošković Institute based on joint work with Hrvoje Abraham and Predrag Lazić Electric field strength in a segment of a Si microstrip detector. In addition magnetic fields create a force only on moving charges The direction the magnetic field produced by a moving charge is perpendicular to the direction of motion The direction of the force due to a magnetic field is perpendicular to the dir Preshower. for the CMS: BARC Participation . Anita . Topkar. BARC. CMS Preshower Detector. End caps of . CMS detector has ~4300 . silicon . strip detectors covering . area . of~17 . m. 2 . . BARC . E.G.Villani. STFC . Rutherford Appleton Laboratory. Particle Physics Department. 1. Outlook. Part I : . Introduction to physics of Si and detection. Part II: Examples of detectors. Conclusions. 2. Introduction. Cyberworld. November. 2014. Sandrine Ammann. Marketing & Communications Officer. Agenda. Latest developments. Complex . queries. Search syntax. Field code. Examples. CLIR. “Wrap-up” example. Q&A session. Electric fields are created by . electric charges. . Any object with a charge has an electric field around it. Opposite charges attract each other; like charges repel. An electric field is a region in which a charge experiences a force. . Studen. , . Karol . Brzezinski. , . Enrico. . Chesi. , Vladimir . Cindro. , . Neal. H. . Clinthorne. , Milan . Grkovski. , Borut . Grošičar. , Klaus . Honscheid. ,. . S. S. . Huh. , Harris . AGH University of Science and Technology. . Faculty of Physics and Applied Computer Science, . Kraków. , Poland. Jagiellonian. . Symposium. 2015 7-12/06/2015. Overview. David Christian. Fermilab. June 9, 2011. Outline. History: Why semiconductor detectors?. (Concentrating on silicon). Energy Resolution. Position Resolution (leverage of IC technology). Transition to the present. 18.1 . The Origin of Electricity. The electrical nature of matter is inherent. in atomic structure.. coulombs. 18.1 . The Origin of Electricity. In nature, atoms are normally. found with equal numbers of protons. . Electric Potential (Energy). Charges. The fundamental rule at the base of all electrical phenomena is that . like charges repel and opposite charges attract. An object that has unequal numbers of electrons and protons is . 12 minutes. . budgets, list of projects, and new graduate students who are entering (. Bruce: please send me numbers and names). . SBIR's and SLAC proposal  and US Japan . Bruce please send me information on your SBIRs and anything similar. Jan . Kaplon. CERN, . Geneva . Outline. S. ilicon strip detectors for the High Luminosity LHC upgrade . Requirements and constraints. Basic architectures of the input stages. Examples of the channel architecture for ATLAS and CMS . University of Tsukuba. Faculty of Pure and Applied Sciences. EDIT2013 March 12-22,2013. Applications of Si detectors. vertexing. tracking. whole tracking. VLSI. UA2. F. Hartmann (2009). First t. ransistor invented 1947 (Shockley, . Defining the Electric Field. Michael Faraday suggested the idea of a force field to explain how the electric force can act at a distance.. An . electric field . is a property of the space around a charged object that exerts forces on other charged objects. .

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