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Author Ожегов, Р. В.; Масленников, С. Н.; Морозов, Д. В.; Окунев, О. В.; Смирнов, К. В.; Гольцман, Г. Н.
Title Тепловизор субмиллиметрового диапазона длин волн Type Conference Article
Year 2004 Publication Десятая всероссийская научная конференция студентов-физиков и молодых ученых (ВНКСФ-10) Abbreviated Journal
Volume (up) Issue Pages
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Abstract
Address
Corporate Author Thesis
Publisher Place of Publication Москва Editor
Language russian Summary Language Original Title
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Notes Duplicated as 347 Approved no
Call Number RPLAB @ s @ thzimaging_vnksf10_2004_rus Serial 348
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Author Масленников, С. Н.; Вахтомин, Ю. Б.; Антипов, С. В.; Смирнов, К. В.; Каурова, Н. С.; Гришина, Е. В.; Воронов, Б. М.; Гольцман, Г. Н.
Title Смесители на основе электронного разогрева в тонких пленках NbN для частот 2.5 и 3.8 ТГц Type Conference Article
Year 2004 Publication Десятая всероссийская научная конференция студентов-физиков и молодых ученых (ВНКСФ-10) Abbreviated Journal
Volume (up) Issue Pages
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Abstract
Address
Corporate Author Thesis
Publisher Place of Publication Москва Editor
Language russian Summary Language Original Title
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Notes Duplicated as 349 Approved no
Call Number RPLAB @ s @ qoheb_vnksf10_2004_rus Serial 350
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Author Vachtomin, Yu. B.; Antipov, S. V.; Kaurova, N. S.; Maslennikov, S. N.; Smirnov, K. V.; Polyakov, S. L.; Svechnikov, S. I.; Grishina, E. V.; Voronov, B. M.; Gol'tsman, G. N.
Title Noise temperature, gain bandwidth and local oscillator power of NbN phonon-cooled HEB mixer at terahertz frequenciess Type Conference Article
Year 2004 Publication Proc. 29th IRMMW / 12th THz Abbreviated Journal Proc. 29th IRMMW / 12th THz
Volume (up) Issue Pages 329-330
Keywords
Abstract We present the performances of HEB mixers based on 3.5 nm thick NbN film integrated with log-periodic spiral antenna. The double side-band receiver noise temperature values are 1300 K and 3100 K at 2.5 THz and at 3.8 THz, respectively. The gain bandwidth of the mixer is 4.2 GHz and the noise bandwidth is 5 GHz. The local oscillator power is 1-3 /spl mu/W for mixers with different active area.
Address Karlsruhe, Germany
Corporate Author Thesis
Publisher Place of Publication Karlsruhe, Germany Editor
Language Summary Language Original Title
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Notes Approved no
Call Number RPLAB @ s @ nt_ifb_lopow_qoheb_karlsruhe_2004 Serial 354
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Author Ozhegov, R. V.; Gorshkov, K. N.; Smirnov, K. V.; Gol’tsman, G. N.; Filippenko, L. V.; Koshelets, V. P.
Title Terahertz imaging system based on superconducting integrated receiver Type Conference Article
Year 2010 Publication Proc. 2-nd Int. Conf. Terahertz and Microwave radiation: Generation, Detection and Applications Abbreviated Journal Proc. 2-nd Int. Conf. Terahertz and Microwave radiation: Generation, Detection and Applications
Volume (up) Issue Pages 20-22
Keywords SIS mixer, SIR
Abstract The development of terahertz imaging instruments for security systems is on the cutting edge of terahertz technology. We are developing a THz imaging system based on a superconducting integrated receiver (SIR). An SIR is a new type of heterodyne receiver based on an SIS mixer integrated with a flux-flow oscillator (FFO) and a harmonic mixer which is used for phase-locking the FFO. Developing an array of SIRs would allow obtaining amplitude and phase characteristics of incident radiation in the plane of the receiver. Employing an SIR in an imaging system means building an entirely new instrument with many advantages compare to traditional systems: i) high temperature resolution, comparable to the best results for incoherent receivers; ii) high spectral resolution allowing spectral analysis of various substances; iii) the local oscillator frequency can be varied to obtain images at different frequencies, effectively providing “color” images; iv) since a heterodyne receiver preserves the phase of the radiation, it is possible to construct 3D images. The paper presents a prototype THz imaging system using an 1 pixel SIR. We have studied the dependence of the noise equivalent temperature difference (NETD) on the integration time and also possible ways of achieving best possible sensitivity. An NETD of 13 mK was obtained with an integration time of 1 sec a detection bandwidth of 4 GHz at a local oscillator frequency of 520 GHz. An important advantage of an FFO is its wide operation range: 300-700 GHz.
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Notes Approved no
Call Number ozhegov2010terahertz Serial 1397
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Author Корнеев, Александр Александрович
Title Квантовая эффективность и темновой счет NbN сверхпроводникового инфракрасного однофотонного детектора Type Manuscript
Year 2006 Publication М. МПГУ Abbreviated Journal
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Corporate Author Thesis Ph.D. thesis
Publisher Place of Publication Editor
Language Russian Summary Language Original Title
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Notes Approved no
Call Number Serial 480
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