Response of a Cold-Electron Bolometer in a coplanar antenna system

Fuente: arXiv
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Autori principali: Pimanov, D. A., Pankratov, A. L., Gordeeva, A. V., Chiginev, A. V., Blagodatkin, A. V., Revin, L. S., Razov, S. A., Safonova, V. Yu., Fedotov, I. A., Skorokhodov, E. V., Orlova, A. N., Tatarsky, D. A., Gusev, N. S., Trofimov, I. V., Mumlyakov, A. M., Tarkhov, M. A.
Natura: Preprint
Pubblicazione: 2024
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author Pimanov, D. A.
Pankratov, A. L.
Gordeeva, A. V.
Chiginev, A. V.
Blagodatkin, A. V.
Revin, L. S.
Razov, S. A.
Safonova, V. Yu.
Fedotov, I. A.
Skorokhodov, E. V.
Orlova, A. N.
Tatarsky, D. A.
Gusev, N. S.
Trofimov, I. V.
Mumlyakov, A. M.
Tarkhov, M. A.
author_facet Pimanov, D. A.
Pankratov, A. L.
Gordeeva, A. V.
Chiginev, A. V.
Blagodatkin, A. V.
Revin, L. S.
Razov, S. A.
Safonova, V. Yu.
Fedotov, I. A.
Skorokhodov, E. V.
Orlova, A. N.
Tatarsky, D. A.
Gusev, N. S.
Trofimov, I. V.
Mumlyakov, A. M.
Tarkhov, M. A.
contents Cold electron bolometers have shown their suitability for use in modern fundamental physical experiments. Fabrication and measurements of the samples with cold-electron bolometers integrated into coplanar antennas are performed in this study. The bolometric layer was made using combined aluminum-hafnium technology to improve quality of aluminum oxide layer and decrease the leakage current. The samples of two types were measured in a dilution cryostat at various temperatures from 20 to 300 mK. The first sample with Ti/Au/Pd antenna shows response in the two frequency bands, at 7--9 GHz with bandwidth of about 20%, and also at 14 GHz with 10% bandwidth. The NEP below 10 aW/Hz^1/2 is reached at 300 mK for 7.7 GHz signal. The second sample with aluminum made antenna shows response in the frequency range 0.5--3 GHz due to the effect of kinetic inductance of superconducting aluminum.
format Preprint
id arxiv_https___arxiv_org_abs_2412_07364
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Response of a Cold-Electron Bolometer in a coplanar antenna system
Pimanov, D. A.
Pankratov, A. L.
Gordeeva, A. V.
Chiginev, A. V.
Blagodatkin, A. V.
Revin, L. S.
Razov, S. A.
Safonova, V. Yu.
Fedotov, I. A.
Skorokhodov, E. V.
Orlova, A. N.
Tatarsky, D. A.
Gusev, N. S.
Trofimov, I. V.
Mumlyakov, A. M.
Tarkhov, M. A.
Superconductivity
Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
Cold electron bolometers have shown their suitability for use in modern fundamental physical experiments. Fabrication and measurements of the samples with cold-electron bolometers integrated into coplanar antennas are performed in this study. The bolometric layer was made using combined aluminum-hafnium technology to improve quality of aluminum oxide layer and decrease the leakage current. The samples of two types were measured in a dilution cryostat at various temperatures from 20 to 300 mK. The first sample with Ti/Au/Pd antenna shows response in the two frequency bands, at 7--9 GHz with bandwidth of about 20%, and also at 14 GHz with 10% bandwidth. The NEP below 10 aW/Hz^1/2 is reached at 300 mK for 7.7 GHz signal. The second sample with aluminum made antenna shows response in the frequency range 0.5--3 GHz due to the effect of kinetic inductance of superconducting aluminum.
title Response of a Cold-Electron Bolometer in a coplanar antenna system
topic Superconductivity
Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
url https://arxiv.org/abs/2412.07364