M100 Band3 Combine 4.2.2: Difference between revisions

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= Overview =
= Overview =
<math>
\sigma_{ij}=\frac{2k}{A_{eff}}
</math>
<math>
\sqrt{\frac{T_{sys,i} T_{sys,j}}{\Delta\nu_{ch} t_{ij}}}
</math>


 
Where k is Boltzmann's constant, A_eff is the effective antenna area, Tsys is the system temperature for antennas i and j, 
Where k is Boltzmann's constant, A_eff is the effective antenna area,  
&Delta;&nu;_ch is the channel width, and t_ij is the integration time  
&Delta;&nu; is the channel width, and t_{ij} is the integration time  
per visibility.
per visibility.

Revision as of 15:14, 17 June 2013

Overview

Where k is Boltzmann's constant, A_eff is the effective antenna area, Tsys is the system temperature for antennas i and j, Δν_ch is the channel width, and t_ij is the integration time per visibility.