PPT-Resistive Microdot Microhole detector

Author : stefany-barnette | Published Date : 2017-05-18

Further developments of detectors with resistive electrodes R Oliveira 1 V Peskov 12 F Pietropaolo 3 P Picchi 4 1 CERN Geneva Switzerland 2 NAM Mexico 3 INFN

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Resistive Microdot Microhole detector: Transcript


Further developments of detectors with resistive electrodes R Oliveira 1 V Peskov 12 F Pietropaolo 3 P Picchi 4 1 CERN Geneva Switzerland 2 NAM Mexico 3 INFN Padova Ialy. brPage 1br Resistive Film Cer amic Substrate Inner Electrode Protective Coating Electrode Protecti Coating Resisti Film Substrate Inner Electrode Electrode Protecti Coating Resisti Film Substrat 山下智弘. JST CREST/. 神戸大学. Borrowing especially from presentations of M. . Asai. (SLAC). Geant4 Tutorial @ Japan 2007. 17-19 Oct, 2007 @ RCNS, based on Geant4 9.0.p01. 1. Outline. Introduction. Matthew Mendonca. Woodside High . School. Mentor. : Dr. . Doug Higinbotham and Lawrence . Selvy. Abstract. The particles that make up the nucleus of an atom are so infinitesimally small that it takes a detector of large magnitude in order to predict where protons and neutrons are located. This certain device requires the construction and utilization of one-meter-long rectangular plastic bars called scintillators. Attached to the left and right ends of each bar are Photomultiplier Tubes (PMTs) and bases with outlets for high voltage and signal wires. In experiments, there is a thick wall of lead positioned in front of the detector which excludes nearly all charged particles and permits primarily neutrons to enter and react with the nuclei inside the bars. When charged particles do pass through the scintillators, photons are released and bounce around until they reach a light guide and are collected by the PMTs. Within these there is liberation of electrons which in turn provide an analog signal to the electronics. A data acquisition system (DAQ) comprised of ADCs (Analog-to-Digital Converters) and TDCs (Time-to-Digital Converters) then store the data into files for later replay and analysis. By doing so, we can better measure the type of particle detected, it’s trajectory, and the amount of energy that it deposits. To ensure that these complex apparatuses are working at an acceptable level, scientists manipulate the constant flux (100 particles/m. B.Satyanarayana, Tata Institute of Fundamental Research, Mumbai. Lecture – I. Saturday, July 2, 2011. B.Satyanarayana, TIFR, Mumbai Resistive Plate Chambers & INO’s ICAL detector SERCEHEP11, VECC, Kolkata. of Plastic Scintillator. Oct. 2, 2009. IP-BSM Group. 1. Schematic . Drawing . of. new Gamma Detector. 2. sandwich type calorimeter. SUS and plastic scintillation plate. wavelength-shifting fiber (WLSF) for light transmission. Lab Methods Day. June 25, 2013. Taylor . Myers. 2. Carbon Monoxide Concentration. % of CO, by volume, in the air. Digital readout. Analog output 0/2/4 to 20 mA. Carbon Dioxide Concentration. % of . CO2, . Micromegas. electrodes made with . sputter deposition. Atsuhiko. Ochi. Kobe University / MAMMA collaboration. 24/04/2013 RD51 mini week, WG6. High position resolution for one dimension. <100 . M. Sullivan. Mini-workshop on the MEIC design. Nov 2, 2012. Introduction. Accelerator Parameters. Previous Synchrotron . R. adiation estimates. Other SR issues. Other detector backgrounds. Points of Interest. Lab Methods Day. June 25, 2013. Taylor . Myers. 2. Carbon Monoxide Concentration. % of CO, by volume, in the air. Digital readout. Analog output 0/2/4 to 20 mA. Carbon Dioxide Concentration. % of . CO2, . dan Simulasi dengan . Microsoft Excel. Oleh. Ishafit. Program Sudi Pendidikan Fisika . UNIVERSITAS AHMAD DAHLAN. hafit@uad.ac.id. http:/blog.uad.ac.id/hafit_uad . Deret Taylor:. Turunan (Derivatives). at the Large Hadron Collider experiments. . Roberto . Guida Paolo Vitulo. PH-DT-DI Univ. Pavia. CERN . EDIT school 2011. 1949:. . Keuffel. 10/11/2016. 1. Outline. Activities of the MPT (Micro . P. attern . T. echnologies) lab. Equipment/buildings. Projects in production. 10/11/2016. 2. Micro Pattern Workshop activities . 3. PCB. A.N. Varanoske. 1. , B.J. Prejean. 1. , N.C. Strock. 1. , D. Conly. 1. , B.T. Peters. 1. , E.S. Morant. 1. , J.D. Sibonga. 2. , S.M. Smith. 2. , . S.R. Zwart. 3. , E.R. Spector. 1. , M. Bishop. 1. , R.S. Fincke. resolution. . with. . resistive. . Micromegas. P. Colas, S. . Suvorov. , M. . Zito. dE. /dx essential in . detailed. . Higgs. and top . analysis. (PID for B and . charm. reconstruction, b charge .

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