DocumentCode :
5832
Title :
Advances in Small Pixel TES-Based X-Ray Microcalorimeter Arrays for Solar Physics and Astrophysics
Author :
Bandler, Simon R. ; Adams, Joseph S. ; Bailey, C.N. ; Busch, S.E. ; Chervenak, James A. ; Eckart, Megan E. ; Ewin, A.E. ; Finkbeiner, Fred M. ; Kelley, Richard L. ; Kelly, D.P. ; Kilbourne, Caroline A. ; Porst, Jan-Patrick ; Porter, F. Scott ; Sadleir, Jo
Author_Institution :
NASA Goddard Space Flight Center, Greenbelt, MD, USA
Volume :
23
Issue :
3
fYear :
2013
fDate :
Jun-13
Firstpage :
2100705
Lastpage :
2100705
Abstract :
We are developing small-pixel transition-edge sensor microcalorimeters for solar physics and astrophysics applications. These large format close-packed arrays are fabricated on solid silicon substrates and are designed to have high energy resolution, and also accommodate count-rates of up to a few hundred counts per second per pixel for X-ray photon energies up to ~ 8 keV. We have fabricated kilo-pixel versions that utilize narrow-line planar and stripline wiring. These arrays have a low superconducting transition temperature, which results in a low heat capacity and low thermal conductance to the heat sink. We present measurements of the performance of pixels with single 65-μm absorbers on a 75-μm pitch. With individual single pixels of this type, we have achieved a full-width at half-maximum energy resolution of 0.9 eV with 1.5 keV Al K X-rays, to our knowledge the first X-ray microcalorimeter with sub-eV energy resolution. We will discuss the properties of these arrays and their application to new solar and astrophysics mission concepts.
Keywords :
X-ray astronomy; X-ray detection; X-ray spectroscopy; astronomical instruments; silicon; superconducting particle detectors; Si; X-Ray microcalorimeter arrays; X-ray photon energy; astrophysics; electron volt energy 1.5 keV; heat sink; kilo pixel version; narrow line planar wiring; size 65 mum; size 75 mum; small pixel TES; small pixel transition-edge sensor microcalorimeters; solar physics; stripline wiring; superconducting transition temperature; Energy resolution; Physics; Resistance; Temperature measurement; Temperature sensors; Arrays; X-ray spectroscopy; low temperature detectors; microcalorimeters; transition-edge sensors (TES);
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2013.2238752
Filename :
6409403
Link To Document :
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