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Author Kawakami, A; Saito, S.; Hyodo, M.
Title Fabrication of nano-antennas for superconducting Infrared detectors Type (down) Journal Article
Year 2011 Publication IEEE Trans. Appl. Supercond. Abbreviated Journal
Volume 21 Issue 3 Pages 632-635
Keywords optical antennas, NbN/MgO/NbN/TiN/Al HEB, dipole antennas, IR, infrared
Abstract To improve the response performance of superconducting infrared detectors, we have developed a fabrication process for nano-antennas. A nano-antenna consists of a dipole antenna, and a superconducting thin film strip placed in the antenna's center. By measuring the transition temperature of the superconducting strips, we confirmed that their superconductivity maintained a good condition after the nano-antenna fabrication process. We also evaluated nano-antenna characteristics using Fourier transform infrared spectroscopy. The evaluated antenna length and width were respectively set at around 2400 nm and 400 nm, and the antennas were placed at intervals of several micrometers around the area of 1 mm2 . In an evaluation of spectral transmission characteristics, clear absorption caused by antenna effects was observed at around 1400 cm-1. High polarization dependencies were also observed.
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Call Number Serial 761
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Author Il'in, K. S.; Lindgren, M.; Currie, M. A.; Semenov, D.; Gol'tsman, G. N.; Sobolewski, Roman; Cherednichenko, S. I.; Gershenzon, E. M.
Title Picosecond hot-electron energy relaxation in NbN superconducting photodetectors Type (down) Journal Article
Year 2000 Publication Appl. Phys. Lett. Abbreviated Journal Appl. Phys. Lett.
Volume 76 Issue 19 Pages 2752-2754
Keywords NbN HEB detectors, two-temperature model, IF bandwidth
Abstract We report time-resolved characterization of superconducting NbN hot-electron photodetectors using an electro-optic sampling method. Our samples were patterned into micron-size microbridges from 3.5-nm-thick NbN films deposited on sapphire substrates. The devices were illuminated with 100 fs optical pulses, and the photoresponse was measured in the ambient temperature range between 2.15 and 10.6 K (superconducting temperature transition TC). The experimental data agreed very well with the nonequilibrium hot-electron, two-temperature model. The quasiparticle thermalization time was ambient temperature independent and was measured to be 6.5 ps. The inelastic electron–phonon scattering time Ï„e–ph tended to decrease with the temperature increase, although its change remained within the experimental error, while the phonon escape time Ï„es decreased almost by a factor of two when the sample was put in direct contact with superfluid helium. Specifically, Ï„e–ph and Ï„es, fitted by the two-temperature model, were equal to 11.6 and 21 ps at 2.15 K, and 10(±2) and 38 ps at 10.5 K, respectively. The obtained value of Ï„e–ph shows that the maximum intermediate frequency bandwidth of NbN hot-electron phonon-cooled mixers operating at TC can reach 16(+4/–3) GHz if one eliminates the bolometric phonon-heating effect.
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ISSN 0003-6951 ISBN Medium
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Call Number Serial 856
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Author Elant'ev, A. I.; Karasik, B. S.
Title Effect of high-frequency current on Nb superconductive film in resistive state Type (down) Journal Article
Year 1989 Publication Sov. J. Low Temp. Phys. Abbreviated Journal Sov. J. Low Temp. Phys.
Volume 15 Issue 7 Pages 379-383
Keywords Nb HEB
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Call Number Serial 882
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Author Гершензон, Е. М.; Гольцман, Г. Н.; Елантьев, А. И.; Карасик, Б. С.; Потоскуев, С. Э.
Title Разогрев электронов в резистивном состоянии сверхпроводника электромагнитным излучением значительной интенсивности Type (down) Journal Article
Year 1988 Publication Физика низких температур Abbreviated Journal Физика низких температур
Volume 14 Issue 7 Pages 753-763
Keywords HEB
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Notes Duplicated as 1697 Approved no
Call Number Serial 883
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Author Kaganov, M. L.; Lifshitz, I. M.; Tanatarov, L. V.
Title Relaxation between electrons and the crystalline lattice Type (down) Journal Article
Year 1957 Publication Sov. Phys. JETP Abbreviated Journal Sov. Phys. JETP
Volume 4 Issue 2 Pages 173-178
Keywords HEB, nonlinear equations, numerical model
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Call Number Serial 894
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