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Koshelets, V. P.; Shitov, S. V.; Dmitriev, P. N., Ermakov, A. B.; Filippenko, L. V.; Koryukin, O.V.; Sobolev, A.S.; Torgashin, M.Yu.; Yagoubov, P.; Hoogeveen, R. |
Title |
Integrated submillimeter and terahertz receivers with superconducting local oscillator |
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2004 |
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Presanted at 8th International Workshop “From Andreev Reflection to the International Space Station” |
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513 |
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Koshelets, V. P.; Shitov, S. V.; Ermakov, A. B.; Filippenko, L. V.; Koryukin, O. V.; Khudchenko, A. V.; Torgashin, M. Yu.; Yagoubov, P. A.; Hoogeveen, R. W. M.; Pylypenko, O. M. |
Title |
Superconducting integrated receiver for TELIS |
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Journal Article |
Year |
2005 |
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IEEE Trans. Appl. Supercond. |
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15 |
Issue |
2 |
Pages |
960-963 |
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SIR |
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1051-8223 |
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517 |
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Koshelets, V.P.; Dmitriev, P.N.; Ermakov, A.B.; Sobolev, A.S.; Torgashin, M.Y.; Kurin, V.V.; Pankratov, A.L.; Mygind, J. |
Title |
Optimization of the phase-locked flux-flow oscillator for the submm integrated receiver |
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Journal Article |
Year |
2005 |
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IEEE Trans. Appl. Supercond. |
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15 |
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2 |
Pages |
964-967 |
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SIR |
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1051-8223 |
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515 |
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Mygind, J.; Samuelsen, M. R.; Koshelets, V. P.; Sobolev, A. S. |
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Simple theory for the spectral. linewidth of the mm-wave Josephson flux flow oscillator |
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Abstract |
Year |
2005 |
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Pi-shift Workshop “Physics of superconducting phase-shift devices” |
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22-22 |
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SIR |
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Ischia, Italy |
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520 |
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Ozhegov, R. V.; Gorshkov, K. N.; Gol'tsman, G. N.; Kinev, N. V.; Koshelets, V. P. |
Title |
The stability of a terahertz receiver based on a superconducting integrated receiver |
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Journal Article |
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2011 |
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Supercond. Sci. Technol. |
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Supercond. Sci. Technol. |
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24 |
Issue |
3 |
Pages |
035003 |
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SIS mixer, SIR, stability |
Abstract |
We present the results of stability testing of a terahertz radiometer based on a superconducting receiver with a SIS tunnel junction as the mixer and a flux-flow oscillator as the local oscillator. In the continuum mode, the receiver with a noise temperature of 95 K at 510 GHz measured over the intermediate frequency (IF) passband of 4-8 GHz offered a noise equivalent temperature difference of 10 ± 1 mK at an integration time of 1 s. We offer a method to significantly increase the integration time without the use of complex measurement equipment. The receiver observed a strong signal over a final detection bandwidth of 4 GHz and offered an Allan time of 5 s. |
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RPLAB @ gujma @ |
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705 |
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