Experimental tests and signal processing for a cryogenic L-band phased array feed on the Green Bank Telescope

Author(s):  
K. F. Warnick ◽  
B. D. Jeffs ◽  
J. Diao ◽  
R. Black ◽  
J. Brady ◽  
...  
2019 ◽  
Vol 489 (2) ◽  
pp. 1709-1718 ◽  
Author(s):  
K M Rajwade ◽  
D Agarwal ◽  
D R Lorimer ◽  
N M Pingel ◽  
D J Pisano ◽  
...  

Abstract Phased array feed (PAF) receivers are at the forefront of modern day radio astronomy. PAFs are currently being developed for spectral line and radio continuum surveys and to search for pulsars and fast radio bursts. Here, we present results of the pilot survey for pulsars and fast radio bursts using the Focal plane L-band Array for the Green Bank Telescope (FLAG) receiver operating in the frequency range of 1.3–1.5 GHz. With a system temperature of ∼18 K, the receiver provided unprecedented sensitivity to the survey over an instantaneous field of view (FoV) of 0.1 deg2. For the survey, we implemented both time and frequency domain search pipelines designed to find pulsars and fast radio bursts that were validated by test pulsar observations. Although no new sources were found, we were able to demonstrate the capability of this instrument from observations of known pulsars. We report an upper limit on the rate of fast radio bursts above a fluence of 0.36 Jy ms to be 1.3 × 106 events per day per sky. Using population simulations, we show that the FLAG will find a factor of 2–3 more pulsars in same survey duration compared to its single pixel counterpart at the Green Bank Telescope. We also demonstrate that the new phased array receiver, ALPACA for the Arecibo telescope, will be a superior survey instrument and will find pulsars at a higher rate than most contemporary receivers by a factor of 2–10.


2018 ◽  
Vol 155 (5) ◽  
pp. 202 ◽  
Author(s):  
D. Anish Roshi ◽  
W. Shillue ◽  
B. Simon ◽  
K. F. Warnick ◽  
B. Jeffs ◽  
...  

Author(s):  
K.F. Warnick ◽  
M. Ruzindana ◽  
B.D. Jeffs ◽  
R.A. Black ◽  
M. Burnett ◽  
...  
Keyword(s):  
L Band ◽  

2017 ◽  
Vol 13 (S337) ◽  
pp. 346-347
Author(s):  
Phrudth Jaroenjittichai

AbstractSince the first light of the 2.4-m Thai National Telescope in 2013, Thailand foresees another great leap forward in astronomy. A project known as “Radio Astronomy Network and Geodesy for Development” (RANGD) by National Astronomical Research Institute of Thailand (NARIT) has been approved for year 2017-2021. A 40-m radio telescope has been planned to operate up to 115-GHz observation with prime-focus capability for low frequency and phased array feed receivers. The telescope’s first light is expected in late 2019 with a cryogenics K-band and L-band receivers. RFI environment at the site has been investigated and shown to be at reasonable level. A 13-m VGOS telescope is also included for geodetic applications. Early single-dish science will focus on time domain observations, such as pulsars and transients, outbursts and variability of maser and AGN sources.


2021 ◽  
Author(s):  
Yu.N. Gorbunov ◽  
G.L. Akopyan ◽  
R.K. Burnosov

The article establishes a connection between the directional properties of digital phased array antennas (FAR) in radar systems by means of space-time signal processing, based on the use of stochastic quantization scales in time, space and level, leading to a decrease in the influence of sampling noise and quantization in the process of diagram formation and the formation of frequency selectivity "narrowed" (in the usual and spatial frequencies - angular directions) frequency channels, formed by increasing the size of spatial and temporal samples.


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