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Author Гольцман, Г. Н.; Смирнов, К. В.
Title По итогам проектов российского фонда фундаментальных исследований. Проект РФФИ # 98-02-16897 Электрон-фононное взаимодействие в двумерном электронном газе полупроводниковых гетероструктур при низких температурах Type Journal Article
Year 2001 Publication (down) Письма в ЖЭТФ Abbreviated Journal Письма в ЖЭТФ
Volume 74 Issue 9 Pages 532-538
Keywords 2DEG, AlGaAs/GaAs heterostructures
Abstract Рассмотрены теоретические и экспериментальные работы, посвященные изучению электрон-фононного взаимодействия в двумерном электронном газе полупроводниковых гетероструктур при низких температурах в случае сильного разогрева в электрическом поле, в квазиравновесных условиях и в квантующем магнитном поле, перпендикулярном 2D слою.
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Notes Duplicated as 1541: “Electron-phonon interaction in a two-dimensional electron gas of semiconductor heterostructures at low temperatures” Approved no
Call Number Serial 1832
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Author Eliasson, Blake J.
Title Metal-insulator-metal diodes for solar energy conversion Type Book Whole
Year 2001 Publication (down) University of Colorado Abbreviated Journal
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Keywords MIM diodes
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Corporate Author Thesis Ph.D. thesis
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Notes PhD thesis Approved no
Call Number Serial 474
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Author Boreman, Glenn D.
Title A Users guide to IR detectors Type Conference Article
Year 2001 Publication (down) Proc. SPIE Abbreviated Journal Proc. SPIE
Volume 4420 Issue Pages 79-90
Keywords optical antennas
Abstract This paper will guide the first-time user toward proper selection and use of IR detectors for applications in industrial inspection, process control, and laser measurements.
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Notes Approved no
Call Number RPLAB @ gujma @ Serial 735
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Author Puscasu, Irina; Boreman, Glenn D.
Title Theoretical and experimental analysis of transmission and enchanced absorption of frequency selective surfaces in the infrared Type Conference Article
Year 2001 Publication (down) Proc. SPIE Abbreviated Journal Proc. SPIE
Volume 4293 Issue Pages 185-190
Keywords optical antennas
Abstract A comparative study between theory and experiment is presented for transmission through lossy frequency selective surfaces (FSSs) on silicon in the 2 – 15 micrometer range. Important parameters controlling the resonance shape and location are identified: dipole length, spacing, impedance, and dielectric surroundings. Their separate influence is exhibited. The primary resonance mechanism of FSSs is the resonance of the individual metallic patches. There is no discernable resonance arising from a feed-coupled configuration. The real part of the element's impedance controls the minimum value of transmission, while scarcely affecting its location. Varying the imaginary part shifts the location of resonance, while only slightly changing the minimum value of transmission. With such fine-tuning, it is possible to make a good fit between theory and experiment near the dipole resonance on any sample. A fixed choice of impedance can provide a reasonable fit to all samples fabricated under the same conditions. The dielectric surroundings change the resonance wavelength of the FSS compared to its value in air. The presence of FSS on the substrate increases the absorptivity/emissivity of the surface in a resonant way. Such enhancement is shown for dipole and cross arrays at several wavelengths.
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Notes Approved no
Call Number RPLAB @ gujma @ Serial 753
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Author Hsiao, F.Z.; Lin, M.C.; Wang, C.; Lee, D.S.; Chen, J.R.; Hilbert, B.; Praud, A.
Title The liquid helium cryogenic system for the superconducting cavity in SRRC Type Conference Article
Year 2001 Publication (down) Proc. Particle Accelerator Conference Abbreviated Journal
Volume 2 Issue Pages 1604-1606
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Abstract A 500 MHz superconducting cavity will replace the current copper cavity and begin to operate in the beginning of the year 2003. A liquid helium cryogenic system provides the cavity at 4.5 K a cooling capacity of 255 W without LN2 pre-cooling and a liquefaction rate of 110 liter/hour with LN2 pre-cooling. A safety factor of 1.5 is used to estimate the heat load from the superconducting cavity and the heat loss from the transfer lines. With the LN2 pre-cooling, this cooling system provides a cooling capacity of up to 450 W to cool down the additional superconducting Landau cavity. The capacity of the system can be tuned using a frequency driver installed at the compressor station. The pressure fluctuations of the dewar and of the suction line are kept to the same stability requirement that of the cavity cryostat to minimize the influence in cavity operation. A shutdown period for maintenance of more than 8000 hours for the cryogenic system is expected without interfering with the continuous operation of the superconducting cavity.
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Notes Approved no
Call Number RPLAB @ s @ Serial 426
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