1980Journal of Physics E Scientific InstrumentsOpen access

Miniature imaging photon detectors

D. Rees, I. McWhirter, P. Rounce, F E Barlow, S. Kellock

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Abstract

An imaging photon detector has been developed for a number of research applications in geophysics and astrophysics. S20/S25 photocathodes provide sensitivity extending to the near-infrared, and a pair of microchannel plates (MCP), mounted in a chevron arrangement provide an electron gain of about 4*10 6 . At a voltage difference of about 2.0 kV across the two MCPs, this gain is adequate to drive a proportional amplitude-sensing system based on a linear resistive anode, and a resolution of about 200 mu m can be obtained over an effective diameter of 20 mm. Over a limited range the resolution is inversely proportional to the gain, with a value of approximately 100 mu m for a gain of 2*10 7 .

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An imaging photon detector has been developed for a number of research applications in geophysics and astrophysics. S20/S25 photocathodes provide sensitivity extending to the near-infrared, and a pair of microchannel plates (MCP), mounted in a chevron arrangement provide an electron gain of about 4*10 6 . At a voltage difference of about 2.0 kV across the two MCPs, this gain is adequate to drive a proportional amplitude-sensing system based on a linear resistive anode, and a resolution of about 200 mu m can be obtained over an effective diameter of 20 mm. Over a limited range the resolution is inversely proportional to the gain, with a value of approximately 100 mu m for a gain of 2*10 7 .

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Available abstract

An imaging photon detector has been developed for a number of research applications in geophysics and astrophysics. S20/S25 photocathodes provide sensitivity extending to the near-infrared, and a pair of microchannel plates (MCP), mounted in a chevron arrangement provide an electron gain of about 4*10 6 . At a voltage difference of about 2.0 kV across the two MCPs, this gain is adequate to drive a proportional amplitude-sensing system based on a linear resistive anode, and a resolution of about 200 mu m can be obtained over an effective diameter of 20 mm. Over a limited range the resolution is inversely proportional to the gain, with a value of approximately 100 mu m for a gain of 2*10 7 .

Key concepts: Detector, Microchannel plate detector, Physics, Optics, Resistive touchscreen, Sensitivity (control systems), Photon, Dynamic range

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