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IF gain bandwidth of membrane-based NbN hot electron bolometers for SHAHIRA
Baubert, J., Salez, M., Merkel, H., Pons, P., Cherednichenko, S., Lecomte, B., et al. (2005). IF gain bandwidth of membrane-based NbN hot electron bolometers for SHAHIRA. IEEE Trans. Appl. Supercond., 15(2), 507–510.
SHAHIRA (Submm Heterodyne Array for HIgh-speed Radio Astronomy) is a project supported by the European Space Agency (ESA) and is designed to fly on the SOFIA observatory. A quasi-optic design has been chosen for 2.5/2.7 THz and 4.7 THz, for hydroxyde radical OH, deuterated hydrogen HD and neutral atomic oxygen OI lines observations. Hot electron bolometers (HEBs) have been processed on 1 /spl mu/m thick SiO/sub 2//Si/sub 3/N/sub 4/ stress-less membranes. In this paper we analyse the intermediate frequency (IF) gain bandwidth from the theoretical point of view, and compare it to measurements.
IF gain bandwidth of membrane-based NbN hot electron bolometers for SHAHIRABaubert, J.Salez, M.Merkel, H.Pons, P.Cherednichenko, S.Lecomte, B.Drakinsky, V.Goltsman, G.Leone, B.info:doi/10.1109/Tasc.2005.849890openurl:?ctx_ver=Z39.88-2004&rfr_id=info%3Asid%2Fhttps%3A%2F%2Fdb.rplab.ru%2Frefbase%2F&genre=article&atitle=IF%20gain%20bandwidth%20of%20membrane-based%20NbN%20hot%20electron%20bolometers%20for%20SHAHIRA&title=IEEE%20Trans.%20Appl.%20Supercond.&stitle=IEEE%20Trans.%20Appl.%20Supercond.&issn=1558-2515&date=2005&volume=15&issue=2&spage=507&epage=510&aulast=Baubert&aufirst=J.&au=Salez%2C%20M.&au=Merkel%2C%20H.&au=Pons%2C%20P.&au=Cherednichenko%2C%20S.&au=Lecomte%2C%20B.&au=Drakinsky%2C%20V.&au=Goltsman%2C%20G.&au=Leone%2C%20B.&id=info%3Adoi%2F10.1109%2FTasc.2005.849890&sid=refbase%3ARpLabcitekey:Baubert_etal2005Baubert, J., Salez, M., Merkel, H., Pons, P., Cherednichenko, S., Lecomte, B., et al. (2005). IF gain bandwidth of membrane-based NbN hot electron bolometers for SHAHIRA. IEEE Trans. Appl. Supercond., 15(2), 507-510.2005JournalArticletextNbN HEB mixers, applicationsurl:https://doi.org/10.1109/TASC.2005.8498901558-2515IEEE Trans. Appl. Supercond.2005152507510