| Zugriffsnummer | 26847 |
| Dokumenttyp | Konferenzartikel |
| Sprache | Englisch |
| Titel | Simulations of Predictable Quantum Efficient Detector with PC1D |
| Autor(in); Institution |
Gran, Jarle; Justervesenet, Kjeller, NORWAY
Kübarsepp, Toomas; AS METROSERT, Tartu, ESTONIA
Sildoja, Meelis; Aalto University and Centre for Metrology and Accreditation (MIKES), Espoo, FINLAND
Manoocheri, Farshild; 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
|
| Quelle/Jahr | Proceedings of NEWRAD 2011 : [extended abstracts]:(2011), 263 - 265 |
| 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 spectral responsivity of Predictable Quantum Efficient Detector (PQED) is calculated based on the responsivity of an ideal quantum detector and taking into account reflection losses from the surface of the photodiode and internal charge carrier losses inside the diode. The internal quantum deficiency (IQD) is obtained from simulations with PC1D using the material data of the produced PQED photodiodes. The simulations suggest that less than 1 ppm uncertainty is achievable with PQED photodiodes mounted in a trap configuration consistent with [1]. [1.] J. Geist et.al.: Prospects for improving the accuracy silicon photodiode self-calibration with custom cryogenic photodiodes, Metrologia, 40, S132-135, 2003. |
Zitierung
Gran, J., Kübarsepp, T., Sildoja, M., Manoocheri, F., Ikonen, E., & Müller, I. (2011). Simulations of Predictable Quantum Efficient Detector with PC1D. NEWRAD 2011 - the 11th International Conference on New Developments and Applications in Optical Radiometry, Maui, Hawaii, 19-23, September, 2011, USA.