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A MULTI-BASELINE 12 GHz ATMOSPHERIC PHASE INTERFEROMETER with ONE MICRON PATH LENGTH SENSITIVITY

Publication ,  Journal Article
Kimberk, RS; Hunter, TR; Leiker, PS; Blundell, R; Nystrom, GU; Petitpas, GR; Test, J; Wilson, RW; Yamaguchi, P; Young, KH
Published in: Journal of Astronomical Instrumentation
December 1, 2012

We have constructed a five station 12 GHz atmospheric phase interferometer (API) for the Submillimeter Array (SMA) located near the summit of Mauna Kea, Hawaii. Operating at the base of unoccupied SMA antenna pads, each station employs a commercial low noise mixing block coupled to a 0.7 m off-axis satellite dish which receives a broadband, white noise-like signal from a geostationary satellite. The signals are processed by an analog correlator to produce the phase delays between all pairs of stations with projected baselines ranging from 33-261 m. Each baseline's amplitude and phase is measured continuously at a rate of 8 kHz, processed, averaged and output at 10 Hz. Further signal processing and data reduction is accomplished with a Linux computer, including the removal of the diurnal motion of the target satellite. The placement of the stations below ground level with an environmental shield combined with the use of low temperature coefficient, buried fiber optic cables provides excellent system stability. The sensitivity in terms of rms path length is 1.3 microns which corresponds to phase deviations of about 1o of phase at the highest operating frequency of the SMA. The two primary data products are: (1) standard deviations of observed phase over various time scales, and (2) phase structure functions. These real-time statistical data measured by the API in the direction of the satellite provide an estimate of the phase front distortion experienced by the concurrent SMA astronomical observations. The API data also play an important role, along with the local opacity measurements and weather predictions, in helping to plan the scheduling of science observations on the telescope.

Duke Scholars

Published In

Journal of Astronomical Instrumentation

DOI

EISSN

2251-1725

ISSN

2251-1717

Publication Date

December 1, 2012

Volume

1

Issue

1

Related Subject Headings

  • 5101 Astronomical sciences
 

Citation

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MLA
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Kimberk, R. S., Hunter, T. R., Leiker, P. S., Blundell, R., Nystrom, G. U., Petitpas, G. R., … Young, K. H. (2012). A MULTI-BASELINE 12 GHz ATMOSPHERIC PHASE INTERFEROMETER with ONE MICRON PATH LENGTH SENSITIVITY. Journal of Astronomical Instrumentation, 1(1). https://doi.org/10.1142/S225117171250002X
Kimberk, R. S., T. R. Hunter, P. S. Leiker, R. Blundell, G. U. Nystrom, G. R. Petitpas, J. Test, R. W. Wilson, P. Yamaguchi, and K. H. Young. “A MULTI-BASELINE 12 GHz ATMOSPHERIC PHASE INTERFEROMETER with ONE MICRON PATH LENGTH SENSITIVITY.” Journal of Astronomical Instrumentation 1, no. 1 (December 1, 2012). https://doi.org/10.1142/S225117171250002X.
Kimberk RS, Hunter TR, Leiker PS, Blundell R, Nystrom GU, Petitpas GR, et al. A MULTI-BASELINE 12 GHz ATMOSPHERIC PHASE INTERFEROMETER with ONE MICRON PATH LENGTH SENSITIVITY. Journal of Astronomical Instrumentation. 2012 Dec 1;1(1).
Kimberk, R. S., et al. “A MULTI-BASELINE 12 GHz ATMOSPHERIC PHASE INTERFEROMETER with ONE MICRON PATH LENGTH SENSITIVITY.” Journal of Astronomical Instrumentation, vol. 1, no. 1, Dec. 2012. Scopus, doi:10.1142/S225117171250002X.
Kimberk RS, Hunter TR, Leiker PS, Blundell R, Nystrom GU, Petitpas GR, Test J, Wilson RW, Yamaguchi P, Young KH. A MULTI-BASELINE 12 GHz ATMOSPHERIC PHASE INTERFEROMETER with ONE MICRON PATH LENGTH SENSITIVITY. Journal of Astronomical Instrumentation. 2012 Dec 1;1(1).
Journal cover image

Published In

Journal of Astronomical Instrumentation

DOI

EISSN

2251-1725

ISSN

2251-1717

Publication Date

December 1, 2012

Volume

1

Issue

1

Related Subject Headings

  • 5101 Astronomical sciences