First supra-THz Heterodyne Array Receivers for Astronomy with the SOFIA Observatory
arXiv:1512.02908 · doi:10.1109/TTHZ.2015.2508005
Abstract
We present the upGREAT THz heterodyne arrays for far-infrared astronomy. The Low Frequency Array (LFA) is designed to cover the 1.9-2.5 THz range using 2x7-pixel waveguide-based HEB mixer arrays in a dual polarization configuration. The High Frequency Array (HFA) will perform observations of the [OI] line at ~4.745 THz using a 7-pixel waveguide-based HEB mixer array. This paper describes the common design for both arrays, cooled to 4.5 K using closed- cycle pulse tube technology. We then show the laboratory and telescope characterization of the first array with its 14 pixels (LFA), which culminated in the successful commissioning in May 2015 aboard the SOFIA airborne observatory observing the [CII] fine structure transition at 1.905 THz. This is the first successful demonstration of astronomical observations with a heterodyne focal plane array above 1 THz and is also the first time high- power closed-cycle coolers for temperatures below 4.5 K are operated on an airborne platform.
accepted for publication in IEEE Transactions on Terahertz Science and Technology
References in corpus (6)
- Early Science with SOFIA, the Stratospheric Observatory for Infrared Astronomy
- The Large APEX Bolometer Camera LABOCA
- GREAT: the SOFIA high-frequency heterodyne instrument
- The upGREAT 1.9 THz multi-pixel high resolution spectrometer for the SOFIA Observatory
- The stability of spectroscopic instruments: A unified Allan variance computation scheme
- ZEUS-2: a second generation submillimeter grating spectrometer for exploring distant galaxies
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- The upGREAT 1.9 THz multi-pixel high resolution spectrometer for the SOFIA Observatory
- The upGREAT dual frequency heterodyne arrays for SOFIA
- Nature of shocks revealed by SOFIA OI observations in the Cepheus E protostellar outflow
- Atlas of Cosmic ray-induced astrochemistry
- Observation and calibration strategies for large-scale multi-beam velocity-resolved mapping of the [CII] emission in the Orion molecular cloud
- 4GREAT -- a four-color receiver for high-resolution airborne terahertz spectroscopy
- Velocity-resolved high-J CO emission from massive star-forming clumps
- New laboratory techniques using heterodyne receivers
- Space as a spectroscopic laboratory: High-resolution spectroscopy of the [C II] hyperfine structure with SOFIA/upGREAT