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Temperature sensitivity and noise of an HTSC Josephson detector on a sapphire bicrystal substrate at 77 K
Authors:M Tarasov  E Stepantsov  A Kalabukhov  M Kupriyanov and D Winkler
Institution:(1) Institute of Radio Engineering and Electronics, Russian Academy of Sciences, ul. Mokhovaya 11, bld. 7, Moscow, 125009, Russia;(2) Institute of Crystallography, Russian Academy of Sciences, Moscow, 119333, Russia;(3) Chalmers University of Technology, Gothenburg, SE41296, Sweden;(4) Institute of Nuclear Physics, Moscow State University, Moscow, 119991, Russia
Abstract:In YBa2Cu3O7 − x films grown on sapphire bicrystal substrates, the Josephson junctions are prepared based on artificial grain boundaries formed by the turn of the crystal lattices about the 100] axis. The films are deposited by the laser ablation method on the buffer CeO2 layer. The critical film temperature reaches 88.5 K with a transition width of 1.5 K. Junctions from 2 to 3-μ m wide are integrated into the planar log-periodic antennas and their characteristics are measured at 77 K. The characteristic voltage I c R n reaches 570 μV. With exposure to external radiation at a frequency of 113 GHz, the Shapiro steps were observed on the current-voltage characteristic. The temperature sensitivity of this detector placed in a quasi-optical receiving unit is measured. At the modulation of the input radiation temperature 77 K/300 K, a response of more than 200 nV is observed at the detector output. At the modulation frequency, intrinsic noise is about 1 nV/Hz1/2, which corresponds to a temperature resolution of 1 K. Original Russian Text ? M. Tarasov, E. Stepantsov, A. Kalabukhov, M. Kupriyanov, D. Winkler, 2007, published in Pis’ma v Zhurnal éksperimental’noĭ i Teoreticheskoĭ Fiziki, 2007, Vol. 86, No. 11, pp. 828–831.
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