DocumentCode :
104605
Title :
Characterization of a Mo/Au Thermometer for ATHENA
Author :
Parra-Borderias, M. ; Fernandez-Martinez, I. ; Fabrega, Lluis ; Camon, Agustin ; Gil, O. ; Costa-Kramer, J.L. ; Gonzalez-Arrabal, R. ; Sese, J. ; Bueno, J. ; Briones, F.
Author_Institution :
Centro de Astrobiologia, Torrejón de Ardoz, Spain
Volume :
23
Issue :
3
fYear :
2013
fDate :
Jun-13
Firstpage :
2300405
Lastpage :
2300405
Abstract :
The first dark characterization of a thermometer fabricated with our Mo/Au bilayers to be used as a transition edge sensor is presented. High-quality, stress-free Mo layers, whose thickness is used to tune the critical temperature (TC) down to 100 mK, are deposited by sputtering at room temperature (RT) on Si3N4 bulk and membranes, and protected from degradation with a 15-nm sputtered Au layer. An extra layer of high-quality Au is deposited by ex situ e-beam to ensure low residual resistance. The thermometer is patterned on a membrane using standard photolithographic techniques and wet etching processes, and is contacted through Mo paths, displaying a sharp superconducting transition (α ≈ 600). Results show a good coupling between Mo and Au layers and excellent TC reproducibility, allowing to accurately correlate dMo and TC. Since dAu is bigger than ξM for all analyzed samples, bilayer residual resistance can be modified without affecting TC . Finally, first current to voltage measurements at different temperatures are measured and analyzed, obtaining the corresponding characterization parameters.
Keywords :
etching; gold; molybdenum; photolithography; silicon compounds; sputter deposition; superconducting particle detectors; thermometers; ATHENA; Mo-Au; Si3N4; dark characterization; sputter deposition; standard photolithographic technique; temperature 293 K to 298 K; thermometer characterization; transition edge sensor; wet etching process; Gold; Resistance; Sputtering; Superconducting transition temperature; Temperature measurement; Temperature sensors; Proximity effect; radiation detectors; transition edge sensors;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2012.2236140
Filename :
6392880
Link To Document :
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