Results 261 to 270 of about 155,793 (285)
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Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1995
An introduction to and an overview of function principles and properties of semiconductor radiation detectors is attempted. The paper is addressed to people interested in detector development but not already experts in the field of semiconductor detectors.
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An introduction to and an overview of function principles and properties of semiconductor radiation detectors is attempted. The paper is addressed to people interested in detector development but not already experts in the field of semiconductor detectors.
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Silicon monolithic infrared detector array
Applied Optics, 1977Impurity doped silicon detector arrays sensitive to long ir wavelengths, based on monolithic processing, were designed and developed. These arrays provide optimized performance utilizing ir transparent detector contacts and reflecting counterelectrodes while minimizing electrical and optical cross talk and providing precise optical definition for the ...
N, Sclar, R L, Maddox, R A, Florence
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A monolithic silicon detector telescope
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1996Abstract An ultrathin silicon detector (1 μm) thick implanted on a standard 400 μm Si-detector has been built to realize a monolithic telescope detector for simultaneous charge and energy determination of charged particles. The performances of the telescope have been tested using standard alpha sources and fragments emitted in nuclear reactions with ...
Cardella G +15 more
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2003 IEEE Nuclear Science Symposium. Conference Record (IEEE Cat. No.03CH37515), 2004
The rapid progress of the past 20 years in silicon radiation detectors is reviewed. The availability of silicon as an almost ideal semiconductor material is one of the main reasons for this progress. The well-defined properties of the silicon-silicon dioxide interface allowed the development of detector structures beyond the structure of a classical ...
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The rapid progress of the past 20 years in silicon radiation detectors is reviewed. The availability of silicon as an almost ideal semiconductor material is one of the main reasons for this progress. The well-defined properties of the silicon-silicon dioxide interface allowed the development of detector structures beyond the structure of a classical ...
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AIP Conference Proceedings, 2006
The main scope of this laboratory is to give the students an introduction of some special characteristics of silicon microstrip detectors. The students will perform some exercises using different instruments to appreciate the properties of these detectors, especially its great position resolution.
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The main scope of this laboratory is to give the students an introduction of some special characteristics of silicon microstrip detectors. The students will perform some exercises using different instruments to appreciate the properties of these detectors, especially its great position resolution.
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Detector capacitance of silicon microstrip detector
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1992Abstract A capacitance property of a silicon microstrip detector was investigated with a solid state device simulator PISCES II-B. Special attention was paid to the electrode configuration and the radiation effect on the capacitance property.
Hirokazu Ikeda +2 more
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1992
The article is an introduction to the physics and technology of silicon microstrip particles detectors. Properties of silicon and of a p-n junction, fundamental for the description of the operating principles of these detectors, are presented. A detailed discussion of physical processes in silicon, leading to the formation of the signal follows the ...
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The article is an introduction to the physics and technology of silicon microstrip particles detectors. Properties of silicon and of a p-n junction, fundamental for the description of the operating principles of these detectors, are presented. A detailed discussion of physical processes in silicon, leading to the formation of the signal follows the ...
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A silicon ultraviolet detector
Sensors and Actuators A: Physical, 1990Abstract A selective photodetector for ultraviolet light has been developed. The detector consists of an integrated combination of a selective photodiode and an interference filter. The doping profile of the diode was devised in such a way that a sharp potential barrier for holes appears at a depth of about 100 nm.
R.S. Popović +3 more
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International Journal of Modern Physics A, 2001
Robust tracking is an essential tool to address the full range of physics which can be accessed at LHC. The CMS Collaboration has chosen the detector technology for the Si-licon Strip tracking system. Over the last few years considerable progress has been made in the understanding of the operation of silicon strip detector in the harsh environment of ...
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Robust tracking is an essential tool to address the full range of physics which can be accessed at LHC. The CMS Collaboration has chosen the detector technology for the Si-licon Strip tracking system. Over the last few years considerable progress has been made in the understanding of the operation of silicon strip detector in the harsh environment of ...
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Proceedings of the 21st IEEE Instrumentation and Measurement Technology Conference (IEEE Cat. No.04CH37510), 2004
The CDFII silicon detector consists of 8 layers of double-sided silicon micro-strip sensors totalling 722,432 readout channels, making it one of the largest silicon detectors in present use by an HEP experiment. After two years of data taking, we report on our experience operating the complex device.
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The CDFII silicon detector consists of 8 layers of double-sided silicon micro-strip sensors totalling 722,432 readout channels, making it one of the largest silicon detectors in present use by an HEP experiment. After two years of data taking, we report on our experience operating the complex device.
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