Title :
Cross strip anode imaging readouts for microchannel plate detectors
Author :
Siegmund, O.H.W. ; Tremsin, A. ; Vallerga, J.V. ; Hull, J.
Author_Institution :
Space Sci. Lab., California Univ., Berkeley, CA, USA
Abstract :
We have developed a novel microchannel plate readout scheme, the cross strip anode. The cross strip anode has a coarse (0.5 mm) multilayer metal and ceramic cross strip pattern that encodes event positions by direct sensing of the charge on each strip and subsequent determination of the charge cloud centroid for each event. Event position encoding is accomplished with chip level preamplifiers on the anode, subsequent analog to digital conversion of individual strip charge values and a software centroid determination. We find that the spatial resolution (<7 μm) is sufficient to resolve 12 μm microchannel plate pores. The cross strip anode can achieve this resolution while using low MCP gain (5×106), thus increasing the local counting rate capacity and overall lifetime of the microchannel plate detector system. The image linearity is good enough (<5 μm) to enable distortions in the microchannel plate hexagonal boundaries to be seen. We also discuss plans for custom chip electronics development so that encoding may be accomplished at photon counting rates >1 MHz and with low power consumption (~2 W)
Keywords :
multiwire proportional chambers; nuclear electronics; photon counting; preamplifiers; readout electronics; charge cloud centroid; chip level preamplifiers; cross strip anode imaging readouts; custom chip electronics development; event position encoding; event positions; image linearity; microchannel plate detectors; multilayer metal and ceramic cross strip pattern; Anodes; Ceramics; Clouds; Detectors; Encoding; Microchannel; Nonhomogeneous media; Preamplifiers; Spatial resolution; Strips;
Conference_Titel :
Nuclear Science Symposium Conference Record, 2000 IEEE
Conference_Location :
Lyon
Print_ISBN :
0-7803-6503-8
DOI :
10.1109/NSSMIC.2000.949291