Zugriffsnummer 26841
Dokumenttyp Konferenzartikel
Sprache Englisch
Titel Predictable Quantum Efficient Detector (PQED)
Autor(in); Institution
Manoocheri, Farshild; Aalto University and Centre for Metrology and Accreditation (MIKES), Espoo, FINLAND
Sildoja, Meelis; Aalto University and Centre for Metrology and Accreditation (MIKES), Espoo, FINLAND
Merimaa, Mikko; Aalto University and Centre for Metrology and Accreditation (MIKES), Espoo, FINLAND
Ikonen, Erkki; Aalto University and Centre for Metrology and Accreditation (MIKES), Espoo, FINLAND
Müller, Ingmar; 7.3, Detektorradiometrie und Strahlungsthermometrie, PTB-Berlin
Werner, Lutz; 7.3, Detektorradiometrie und Strahlungsthermometrie, PTB-Berlin
Gran, Jarle; Justervesenet, Kjeller, NORWAY
Hoem, Stian; Justervesenet, Kjeller, NORWAY
Kübarsepp, Toomas; AS METROSERT, Tartu, ESTONIA
Porrovecchio, Geiland; Ceský Metrologický Institut, Brno, CZECH REPUBLIC
Smid, Marek; Ceský Metrologický Institut, Brno, CZECH REPUBLIC
Brida, Giorgio; Istituto Nazionale di Ricerca Metrologica (INRIM), Torino, ITALY
Rastello, Maria Luisa; Istituto Nazionale di Ricerca Metrologica (INRIM), Torino, ITALY
Quelle/Jahr Proceedings of NEWRAD 2011 : [extended abstracts]:(2011), 13 - 15
Availability [Online] + [CD-ROM]
Herausgeber(in)
Park, Seongchong
URL
Konferenzangaben NEWRAD 2011 - the 11th International Conference on New Developments and Applications in Optical Radiometry, Maui, Hawaii, 19-23, September, 2011, USA
Zusammenfassung The internal quantum efficiency of silicon photodiodes can be made very close to unity [1-3]. This has raised interest to use induced-junction photodiodes [4] as absolute radiometric detector standards with measurement uncertainty in the parts-per-million (ppm) range [5,6]. The design and construction of a Predictable Quantum Efficient Detector (PQED) is aimed to test how small internal quantum deficiency (IQD) of such a device can be obtained [7-10]. Our preliminary experimental results are very encouraging and support the expectation that the PQED can provide a new underpinning scale for optical power measurements with 1 ppm uncertainty. REFERENCES 1. J. Geist, E. Liang and A. R. Schaefer, Complete collection of minority carriers from the inversion layer in induced junction diodes, J. Appl. Phys. 52, 4879-4881, 1981. 2. E. F. Zalewski and C. R. Duda, Silicon photodiode device with 100% external quantum efficiency, Applied Optics 22, 2867-2873, 1983. 3. N. P. Fox, Trap detectors and their properties, Metrologia 28, 197-202, 1991. 4. T. E. Hansen, Silicon UV-Photodiodes using natural inversion layers, Phys. Scripta 18, 471-475, 1978. 5. J. Geist, G. Brida and M. L. Rastello, Prospects for improving the accuracy of silicon photodiode self-calibration with custom cryogenic photodiodes, Metrologia 40, 132-135, 2003. 6. M. Sildoja, F. Manoocheri and E. Ikonen, Reflectance calculations for a predictable quantum efficient detector, Metrologia 46, S151-S154, 2009. 7. M. Sildoja et al, PQED I: Photodiodes and design, these proceedings DBR_OR_047. 8. I. Mueller et al, PQED II: Characterization results, these proceedings DBR_OR_029.

Zitierung

Manoocheri, F., Sildoja, M., Merimaa, M., Ikonen, E., Müller, I., Werner, L., Gran, J., Hoem, S., Kübarsepp, T., Porrovecchio, G., Smid, M., Brida, G., & Rastello, M. L. (2011). Predictable Quantum Efficient Detector (PQED). NEWRAD 2011 - the 11th International Conference on New Developments and Applications in Optical Radiometry, Maui, Hawaii, 19-23, September, 2011, USA.

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