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Gol'tsman BM, Kutasov VA, Luk'yanova LN. Mechanism of formation of texture and its influence on the strength of thermoelectric p-Bi0.5Sb1.5Te3. Phys Sol St. 2009;51(4):747–9.
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Ожегов РВ, Окунев ОВ, Гольцман ГН. Флуктуационная чувствительность сверхпроводящего болометрического смесителя на эффекте разогрева электронного газа. Радиотехника. 2009;(3):120–4.
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Yang JKW, Kerman AJ, Dauler EA, Cord B, Anant V, Molnar RJ, et al. Suppressed critical current in superconducting nanowire single-photon detectors with high fill-factors. IEEE Trans. Appl. Supercond.. 2009;19(3):318–22.
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Meledin D, Pavolotsky A, Desmaris V, Lapkin I, Risacher C, Perez V, et al. A 1.3-THz balanced waveguide HEB mixer for the APEX telescope. IEEE Trans. Microw. Theory Techn.. 2009;57(1):89–98.
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Zhizhon Y, Majedi HA. Optoelectronic mixing in the NbN superconducting nanowire single photon detectors. In: Proc. SPIE. Vol 3786.; 2009. 9.
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Goltsman GN. Ultrafast nanowire superconducting single-photon detector with photon number resolving capability. In: Arakawa Y, Sasaki M, Sotobayashi H, editors. Proc. SPIE. Vol 7236. SPIE; 2009. 72360D (1 to 11).
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Benford D, Moseley H, Zmuidzinas J. Direct detectors for the Einstein inflation probe. In: J. Phys.: Conf. Ser. Vol 155.; 2009. 012001 (1 to 49).
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Anosov AA, Barabanenkov YN, Kazanskii AS, Less YA, Sharakshane AS. The inverse problem of acoustothermography with correlation reception of thermal acoustic radiation. Acoust. Phys.. 2009;55(1):114–9.
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Lieberzeit PA, Dickert FL. Chemosensors in environmental monitoring: challenges in ruggedness and selectivity. Anal Bioanal Chem. 2009;393(2):467–72.
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Mohan N, Minaeva O, Goltsman GN, Saleh MF, Nasr MB, Sergienko AV, et al. Ultrabroadband coherence-domain imaging using parametric downconversion and superconducting single-photon detectors at 1064 nm. Appl Opt. 2009;48(20):4009–4017.
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