3 ms·
What was the WoW signal in signal processing terms? Just a strong CW burst? Any modulation? Asked differently, if I looked at this signal in an oscilloscope, w
by brcmthrowaway 2mo ago
What was the WoW signal in signal processing terms? Just a strong CW burst? Any modulation?
Asked differently, if I looked at this signal in an oscilloscope, would it be a perfect sine wave at the hydrogen line frequency?
That's got to be an alien transmitting that.
- sidewndr46 2mo agoit's just a CW carrier with no observable modulation for 72 seconds, the time the telescope would be expected to observe a transmission based on the movement of the earth
- mistaken 2mo agoHow do you know this? AFAIK the raw I/Q values, voltage levels aren't recorded anywhere. The printout only shows the integrated signal strength over 10s periods.
- sidewndr46 2mo agoI'm referring to the recorded signal with the 10 second period. If the modulation period was greater than 10 seconds there could be observable modulation. For all we know the actual transmission was a high speed data burst showing us how to build faster than light travel.
- CamperBob2 2mo agoA near-perfect sinewave is pretty much what you'd expect (and in fact will receive) at the H-line, since it represents a difference in quantum energy levels, specifically the hyperfine interaction due to flipping the electron-versus-proton spin direction. Any sort of modulation on a 1420-MHz signal would be much more interesting. What was interesting about the Wow signal is simply how strong it was compared to the expected 1420 MHz background. Radio astronomy is full of anecdotes like that. My favorite is the 2450 MHz emission that was found to be caused by people in the breakroom opening the microwave oven door before hitting the 'Stop' button.