A Path to High-Efficiency Optical Coupling for HIRMES View Full Text


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Article Info

DATE

2018-12

AUTHORS

Timothy M. Miller, Ari-David Brown, Nicholas Costen, David Franz, Alexander Kutyrev, Vilem Mikula, Kevin H. Miller, S. Harvey Moseley, Joseph Oxborrow, Karwan Rostem, Edward J. Wollack

ABSTRACT

The high-resolution mid-infrared spectrometer (HIRMES) under development for Stratospheric Observatory for Infrared Astronomy is an instrument operating in the 25–122 μm spectral range with a spectral resolution R = Δλ/λ ~ 100,000 and has two absorber-coupled transition edge sensor bolometric detector focal planes. We have developed novel NbTiN low-stress absorber coatings which have the required optical impedance across the HIRMES operating band. The low intrinsic stress of these coatings allow for a peak-to-valley corrugation amplitude < 5 μm of the 450 nm thick, 1.4 mm × 1.7 mm detector pixels. Furthermore, these coatings have a superconducting transition temperature ~ 10 K, which allows them to simultaneously serve as an absorber in the desired signal band and a rejection filter at long wavelengths. This attribute makes them especially attractive for ultrasensitive absorber-coupled bolometric detector applications, because it helps in controlling the optical loading from out-of-band radiation. We also discuss a novel method for integrating a wedged-reflective absorber termination to the detector array. More... »

PAGES

1-6

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URI

http://scigraph.springernature.com/pub.10.1007/s10909-018-1939-7

DOI

http://dx.doi.org/10.1007/s10909-018-1939-7

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