A Design For Large-Area Fast Photo-Detectors With Transmission-Line Readout And Waveform Sampling

Brent L Adams,J Anderson,Klaus Attenkofer,M Bogdan,K L Byrum,G W F Drake, J Efflam,H Frisch,Jeanfrancois Genat,Mary K Heintz,Z Insepov,Valentin Ivanov, E N May,T Natoli,K Nishimura, Robert B Northrop, A A Paramonov,Michael J Pellin,E Ramberg, A I Ronzhin,Dmitri Routkevitch,L Ruckman, Manuel Calderon De La Barca Sanchez, G Sellberg,Oswald H W Siegmund, R W Stanek,Feng Tang,Anton S Tremsin, G Varner,J Vavra,H H Wang,H Weerts, M Wetstein,T Zhao, A V Zinoviev

2009 16TH IEEE-NPSS REAL TIME CONFERENCE(2009)

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摘要
We present a preliminary design and the results of simulation for a photo-detector module to be used in applications requiring the coverage of areas of many square meters with time resolutions less than 10 pico-seconds and position resolutions of less than a millimeter for charged particles. The source of light is Cherenkov light in a radiator/window, the amplification is provided by panels of micro-pores functionalized to act as microchannel plates (MCPs). The good time and position resolution stems from the use of an array of parallel 50 Cl transmission lines (strips) as the collecting anodes. The anode strips feed multi-GS/sec sampling chips which digitize the pulse waveform at each end of the strip, allowing a measurement of the time from the average of the two ends, and a 2-dimensional position measurement from the difference of times on a strip, and, in the orthogonal direction, the strip number, or a centroid of the charges deposited on adjacent strips. The module design is constructed so that large areas can be 'tiled' by an array of modules
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关键词
transmission lines,sampling methods,photonics,chip,charged particles,power transmission lines,transmission line,resolution,anodes,geometry,photodetectors,power transmission,sampling,design,materials,simulation,meters,cathodes,wave forms,2 dimensional,detectors,microchannel
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