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Author Voevodin, E. I.; Gershenzon, E. M.; Goltsman, G. N.; Ptitsina, N. G. url  openurl
  Title Energy-spectrum of shallow acceptors in Ge deformed strongly by a uniaxial pressure Type Journal Article
  Year 1989 Publication Sov. Phys. and Technics of Semiconductors Abbreviated Journal Sov. Phys. and Technics of Semiconductors  
  Volume 23 Issue (down) 8 Pages 843-846  
  Keywords Ge, crystallography  
  Abstract Проведены исследования спектров фототермической ионизации мелких акцепторов (В, Аl) в Ge, предельно сжатом вдоль кристаллографической оси [100]. Из данных измерений с учетом теории построен энергетический спектр примесей. Показано, что энергии большого числа уровней четных и нечетных состояний хорошо соответствуют расчету, выполненному для примесей в анизотропном полупроводнике с параметром анизотропии γ=m∗⊥/m∗∥>1.  
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  Notes Энергетический спектр мелких акцепторов в сильно одноосно деформированном Ge Approved no  
  Call Number Serial 1692  
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Author Гершензон, Е. М.; Гольцман, Г. Н.; Елантьев, А. И.; Кагане, М. Л.; Мултановский, В. В.; Птицина, Н. Г. url  openurl
  Title Применение субмиллиметровой ЛОВ спектроскопии для определения химической природы и концентрации примесей в чистых полупроводниках Type Journal Article
  Year 1983 Publication Физика и техника полупроводников Abbreviated Journal Физика и техника полупроводников  
  Volume 17 Issue (down) 8 Pages 1430-1437  
  Keywords BWO spectroscopy, pure semiconductors, residual impurities  
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  Language Russian Summary Language Original Title  
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  Notes Duplicated as 1714 Approved no  
  Call Number Serial 1712  
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Author Gershenson, E. M.; Gol'tsman, G. N.; Elant'ev, A. I.; Kagane, M. L.; Multanovskii, V. V.; Ptitsina, N. G. url  openurl
  Title Use of submillimeter backward-wave tube spectroscopy in determination of the chemical nature and concentration of residual impurities in pure semiconductors Type Journal Article
  Year 1983 Publication Sov. Phys. Semicond. Abbreviated Journal Sov. Phys. Semicond.  
  Volume 17 Issue (down) 8 Pages 908-913  
  Keywords BWO spectroscopy, pure semiconductors, residual impurities  
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  Notes Применение субмиллиметровой ЛОВ спектроскопии для определения химической природы и концентрации примесей в чистых полупроводниках Approved no  
  Call Number Serial 1714  
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Author Gershenzon, E. M.; Goltsman, G.; Orlova, S.; Ptitsina, N.; Gurvich, Y. url  openurl
  Title Germanium hot-electron narrow-band detector Type Journal Article
  Year 1971 Publication Sov. Radio Engineering And Electronic Physics Abbreviated Journal Sov. Radio Engineering And Electronic Physics  
  Volume 16 Issue (down) 8 Pages 1346  
  Keywords Ge HEB detectors  
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  Publisher Scripps Clinic Res Foundation 476 Prospect St, La Jolla, Ca 92037 Place of Publication Editor  
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  Notes Approved no  
  Call Number Serial 1741  
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Author Lindgren, M.; Currie, M.; Zeng, W.-S.; Sobolewski, R.; Cherednichenko, S.; Voronov, B.; Gol'tsman, G. N. url  doi
openurl 
  Title Picosecond response of a superconducting hot-electron NbN photodetector Type Journal Article
  Year 1998 Publication Appl. Supercond. Abbreviated Journal Appl. Supercond.  
  Volume 6 Issue (down) 7-9 Pages 423-428  
  Keywords NbN SSPD, SNSPD  
  Abstract The ps optical response of ultrathin NbN photodetectors has been studied by electro-optic sampling. The detectors were fabricated by patterning ultrathin (3.5 nm thick) NbN films deposited on sapphire by reactive magnetron sputtering into either a 5×10 μm2 microbridge or 25 1 μm wide, 5 μm long strips connected in parallel. Both structures were placed at the center of a 4 mm long coplanar waveguide covered with Ti/Au. The photoresponse was studied at temperatures ranging from 2.15 K to 10 K, with the samples biased in the resistive (switched) state and illuminated with 100 fs wide laser pulses at 395 nm wavelength. At T=2.15 K, we obtained an approximately 100 ps wide transient, which corresponds to a NbN detector response time of 45 ps. The photoresponse can be attributed to the nonequilibrium electron heating effect, where the incident radiation increases the temperature of the electron subsystem, while the phonons act as the heat sink. The high-speed response of NbN devices makes them an excellent choice for an optoelectronic interface for superconducting digital circuits, as well as mixers for the terahertz regime. The multiple-strip detector showed a linear dependence on input optical power and a responsivity =3.9 V/W.  
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  ISSN 0964-1807 ISBN Medium  
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  Notes Approved no  
  Call Number Serial 1584  
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