So I was wondering if we ever started "broadcasting" neutrinos (assuming we had technology to receive them like radios today) would we have a way to divide up the spectrum or otherwise prevent interference? Anyone know? Anyone want to guess?
The precision which neutrino pulses could be detected in time (phase modulation) would determine the signal-to-noise ratio. The bandwidth of the channel is dependent upon that.
So very large, very short bursts of neutrinos at controllable times in very fast succession would be a very high-bandwidth channel. Divide up the spectrum exactly as we do today with radio.
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So I was wondering if we ever started "broadcasting" neutrinos (assuming we had technology to receive them like radios today) would we have a way to divide up the spectrum or otherwise prevent interference? Anyone know? Anyone want to guess?
The precision which neutrino pulses could be detected in time (phase modulation) would determine the signal-to-noise ratio. The bandwidth of the channel is dependent upon that.
So very large, very short bursts of neutrinos at controllable times in very fast succession would be a very high-bandwidth channel. Divide up the spectrum exactly as we do today with radio.