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Koshelets, V. P.; Khudchenko, A. V. |
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Title |
Analysis of spectral characteristics of a superconducting integrated receiver |
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Year |
2006 |
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J. Communications Technol. Electron. |
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51 |
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5 |
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596-603 |
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RPLAB @ s @ mix_SIR |
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400 |
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Author |
Koshelets, V. P.; Khudchenko, A. V. |
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Title |
Analysis of spectral characteristics of a superconducting integrated receiver |
Type |
Journal Article |
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Year |
2006 |
Publication |
J. Communications Technol. Electron. |
Abbreviated Journal |
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Volume |
51 |
Issue |
5 |
Pages |
596-603 |
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SIR |
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1064-2269 |
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526 |
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Rosfjord, Kristine M.; Yang, Joel K. W.; Dauler, Eric A.; Kerman, Andrew J.; Vikas Anant; Voronov, Boris M.; Gol'tsman, Gregory N.; Berggren, Karl K. |
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Title |
Nanowire Single-photon detector with an integrated optical cavity and anti-reflection coating |
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Journal Article |
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Year |
2006 |
Publication |
Opt. Express |
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Opt. Express |
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14 |
Issue |
2 |
Pages |
527-534 |
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SSPD, SNSPD, cavity |
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We have fabricated and tested superconducting single-photon detectors and demonstrated detection efficiencies of 57% at 1550-nm wavelength and 67% at 1064 nm. In addition to the peak detection efficiency, a median detection efficiency of 47.7% was measured over 132 devices at 1550 nm. These measurements were made at 1.8K, with each device biased to 97.5% of its critical current. The high detection efficiencies resulted from the addition of an optical cavity and anti-reflection coating to a nanowire photodetector, creating an integrated nanoelectrophotonic device with enhanced performance relative to the original device. Here, the testing apparatus and the fabrication process are presented. The detection efficiency of devices before and after the addition of optical elements is also reported. |
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1094-4087 |
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PMID:19503367 |
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388 |
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Brown, E. R.; Lee, A. W. M.; Navi, B. S.; Bjarnason, J. E. |
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Characterization of a planar self-complementary square-spiral antenna in the THz region |
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Journal Article |
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2006 |
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Microwave and Optical Technology Letters |
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Microwave Opt Technol Lett |
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48 |
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3 |
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524-529 |
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optical antennas; square spiral antenna; self complementary THz; photomixing; lens; method of moments; geometric optics; physical optics |
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This paper describes a compact, self-complementary square-spiral antenna on a GaAs substrate with a broadside high-directivity (~9 dB) frequency-independent pattern when coupled through a silicon hyperhemisphere. The driving-point resistance undulates between ~00 and 300Ω from 200 GHz to 1 THz—much higher than the 72Ω value from Booker's modified formula, but quite beneficial for coupling to high-impedance broadband devices |
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RPLAB @ gujma @ |
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736 |
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Author |
Shitov, Sergey V.; Vystavkin, Alexander N. |
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A design analysis of imaging radiometer with antenna-coupled transition-edge sensors |
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2006 |
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Nuclear Instruments and Methods in Physics Research A |
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559 |
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503-505 |
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RPLAB @ s @ det_imag_radiometer_Shitov |
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402 |
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