arXiv · 1405.1570
Josephson junction based thermometer and its application in bolometry
Abstract
We propose a new type of a transition edge sensor based on an Al/AlOx/Ti/AlOx/Al superconductor - insulator - superconductor - insulator - superconductor (SIS'IS) structure. It exhibits sharp dependence of zero bias resistance on temperature of the titanium absorber in the vicinity of its superconducting critical temperature. We demonstrate temperature sensitivity of the device to be $2\ μ\text{K}/\sqrt{\text{Hz}}$. Noise Equivalent Power (NEP) of the device, limited by the amplifier noise, is estimated to be $4\times 10^{-17}\ {\rm W}/ \sqrt{\rm Hz}$ at 313 mK. The tunnel junctions between superconducting leads should help to overcome the size limitation imposed by proximity effect in conventional transition edge sensors, without sacrificing the sensitivity. Besides that, the input resistance of the device can be tuned in a wide range.
Explore related subjects
Keep this discovery
Timothé Faivre, Dmitry Golubev, Jukka P. Pekola. 2014-09-02. Josephson junction based thermometer and its application in bolometry. https://doi.org/10.1063/1.4894516
Cite the original work for its findings. Save a collection to share your selection of sources.