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Author Feldman, M. J.; Rudner, S.
Title Mixing with SIS arrays Type Journal Article
Year 1983 Publication Reviews of Infrared and Millimeter-Waves Abbreviated Journal
Volume 1 Issue (up) Pages 47
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Notes Approved no
Call Number Serial 232
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Author Gershenzon, E. M.; Goltsman, G. N.; Semenov, A. D.; Sergeev, A. V.
Title Limiting characteristic of fast superconducting bolometers Type Journal Article
Year 1989 Publication Sov. Phys.-Tech. Phys. Abbreviated Journal Sov. Phys.-Tech. Phys.
Volume 34 Issue (up) Pages 195-199
Keywords HEB
Abstract Теоретически и экспериментально исследовано физическое ограничение быстродействия сверхпроводящего болометра. Показано, что минимальная постоянная времени реализуется в условиях электронного разогрева и определяется процессом неупругого электрон-фонон- ного взаимодействия. Сформулированы требования кконструкции «электронного болометра» для достижения предельной чувствительности. Проведено сравнение характеристик электронного болометра и обычных болометров различных типов.
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Notes О предельных характеристиках быстродействующих серхпроводниковых болометров Approved no
Call Number Serial 237
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Author Maas, S.
Title SIS mixers Type Conference Article
Year 1993 Publication Artech House Abbreviated Journal
Volume Issue (up) Pages 338-340
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Publisher Place of Publication Boston, MA Editor
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Call Number Serial 249
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Author Phillips, T. G.; Keene, J.
Title Submillimeter astronomy [heterodyne spectroscopy] Type Conference Article
Year 1992 Publication Proc. IEEE Abbreviated Journal
Volume 80 Issue (up) Pages 1662-1678
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Notes To approve: number, series, pages Approved no
Call Number Serial 250
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Author Karasik, B. S.; Elantiev, A. I.
Title Analysis of the noise performance of a hot-electron superconducting bolometer mixer Type Conference Article
Year 1995 Publication Proc. 6th Int. Symp. Space Terahertz Technol. Abbreviated Journal Proc. 6th Int. Symp. Space Terahertz Technol.
Volume Issue (up) Pages 229-246
Keywords HEB mixers
Abstract A theoretical analysis for the noise temperature of hot–electron superconducting mixer has been presented. Thecontributions of both Johnson noise and electron temperature fluctuations have been evaluated. A set of criteriaensuring low noise performance of the mixer has been stated and a simple analytic expression for the noisetemperature of the mixer device has been suggested. It has been shown that an improvement of the mixer sensitivitydoes not necessarily follow by a decrease of the bandwidth. An SSB noise temperature limit due to the intrinsic noisemechanisms has been estimated to be as low as 40–90 K for a mixer device made from Nb or NbN thin film.Furthermore, the conversion gain bandwidth can be as wide as is allowed by the intrinsic electron temperaturerelaxation time if an appropriate choice of the mixer resistance has been made. The intrinsic mixer noise bandwidthis of 3 GHz for Nb device and of 5 GHz for NbN device. An additional improvement of the theory has been madewhen a distinction between the impedance measured at high intermediate frequency (larger than the mixerbandwidth) and the mixer ohmic resistance has been taken into account.Recently obtained experimental data on Nb and NbNbolometer mixer devices are viewed in connection with thetheoretical predictions.The noise temperature limit has also been specified for the mixer device where an outdiffusion coolingmechanism rather than the electron–phonon energy relaxation determines the mixer bandwidth. A consideration ofthe noise performance of a bolometer mixer made from YBaCuO film utilizing a hot–electron effect has been done.
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Publisher Place of Publication Pasadena, Ca Editor
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Notes Approved no
Call Number Serial 258
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