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Author van't Klooster, K.; Myasnikova, S. E.; Parshin, V. V.; Kasparek, W.
Title Results of reflection loss measurements of sample material for radio astronomy telescope antenna for Planck Project Type Conference Article
Year 2004 Publication Proc. 14th international crimean conference on microwave and telecommunication technology Abbreviated Journal (up)
Volume Issue Pages 753-755
Keywords mirror, reflection index, emissivity, Fabry-Perot interferometer, space observatory, terahertz, THz
Abstract Advanced radio telescope antennas for space applications are realised by the use of stable composite materials, which are lighter in general than various metal realisations. Reflectivity measurements have been carried out on high technology samples for the Planck radio telescope. Highly accurate results have been obtained at the Applied Physics Institute in Nizhny Novgorod, and an independent measurement with a totally different setup at the University of Stuttgart confirmed that one of the samples showed a strange behaviour. Moreover, it confirmed the high accuracy of the testing method.
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Call Number Serial 579
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Author Shitov, S. V.; Inatani, J.; Shan, W.-L.; Takeda, M; Wang, Z.; Uvarov, A. V.; Ermakov, A. B.; Uzawa, Y.
Title Measurement of emissivity of the ALMA antenna panel at 840 GHz using NbN-based heterodyne SIS receiver Type Conference Article
Year 2008 Publication Proc. 19th Int. Symp. Space Terahertz Technol. Abbreviated Journal (up)
Volume Issue Pages 263-266
Keywords SIS mixer, reflection, emissivity, mirror, space telescope, space observatory
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Call Number Serial 580
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Author Tretyakov, I. V.; Ryabchun, S. A.; Maslennikov, S. N.; Finkel, M. I.; Kaurova, N. S.; Seleznev, V. A.; Voronov, B. M.; Gol'tsman, G.N.
Title NbN HEB mixer: fabrication, noise temperature reduction and characterization Type Conference Article
Year 2008 Publication Proc. Basic problems of superconductivity Abbreviated Journal (up)
Volume Issue Pages
Keywords HEB, mixer, noise temperature, conversion gain bandwidth
Abstract We demonstrate that in the terahertz region superconducting hot-electron mixers offer the lowest noise temperature, opening the possibility of using HTS's in the future to fabricate these devices. Specifically, a noise temperature of 950 K was measured for the receiver operating at 2.5 THz with a NbN HEB mixer, and a gain bandwidth of 6 GHz was measured at 300 GHz near Tc for the same mixer.
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Publisher Place of Publication Moscow-Zvenigorod Editor
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Call Number Serial 591
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Author Nagatsuma, T.; Hirata, A.; Sato, Y.; Yamaguchi, R.; Takahashi, H.; Kosugi, T.; Tokumitsu, M.; Sugahara, H.; Furuta, T.; Ito, H.
Title Sub-Terahertz Wireless Communications Technologies Type Conference Article
Year 2005 Publication Proc. 18th International Conference on Applied Electromagnetics and Communications (ICECom 2005) Abbreviated Journal (up)
Volume Issue Pages 1-4
Keywords subterahartz terahertz THz communications
Abstract This paper presents a 10-Gb/s wireless link system that uses a 120-GHz-band sub-terahertz electro-magnetic waves. In the transmitter, photonic techniques are used for generation, modulation, and emission of the sub-THz signals, while the receiver is composed of all-electronic devices using InP-HEMTs.
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Call Number Serial 593
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Author Nagatsuma, T.; Hirata, A.; Royter, Y.; Shinagawa, M.; Furuta, T.; Ishibashi, T.; Ito, H.
Title A 120-GHz integrated photonic transmitter Type Conference Article
Year 2000 Publication Proc. International topical meeting on microwave photonics (MWP 2000) Abbreviated Journal (up)
Volume Issue Pages 225 - 228
Keywords THz, teraherts communications, terahertz communication channel, photodiode, transmitter
Abstract A photonics-based 120-GHz transmitter has been developed. A photodiode, a planar antenna and a silicon lens were integrated to form a compact millimeter-wave (MMW) emitter. The MMW signal emitted from the transmitter has been detected with a waveguide-mounted Schottky diode. The received power exceeded 100 μW, which is the highest value ever reported for photonic MMW transmitter at frequencies of >100 GHz
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Call Number Serial 595
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