FIELD: wireless communication systems.
SUBSTANCE: message in form of a text file is supplied to a message encoding unit, which converts it into a binary digital code, then supplied to an information signal generator, which generates two signals, the first of which is an information signal in the form of a binary code, and the second is a "start"-signal, which is sent to a "time-amplitude" converter for signal synchronization, creating a stream of gamma radiation using a Mossbauer radioactive source, the energy of gamma photons is adjusted using a Doppler modulation system, on which a Mossbauer radioactive source is fixed, so that it falls on the resonance absorber Mossbauer absorption line, flux of gamma quanta is directed into a modulating system consisting of a piezoelectric transducer and a resonant absorber rigidly fixed on its surface, information signal is supplied to the piezoelectric transducer with amplitude from 0, which corresponds to "0" in the binary code, to the value providing the shift of the resonance absorber by half the wavelength of gamma-photons, which will correspond to "1" in the binary code, then intensity-modulated flux of gamma-photons is transmitted through medium and recorded by detector, "stop"-signal is generated during the resonance gamma-photon detection by the detector, "start"-signal and "stop"-signal are supplied to the corresponding inputs of the "time-amplitude" converter, further, the signal generated by the "time-amplitude" converter and the amplitude of which is proportional to the measured time interval between the "start" and "stop" signals, is supplied to an accumulation unit for amplitude analysis, amplitude analysis of the received pulses is carried out into the data accumulation unit and distribution of the registered resonance photons from the moment of arrival of the "start"-signal is output in the form of a time spectrum, analysed by a decoder and output in the form of a transmitted message.
EFFECT: providing wireless communication on a random flux of resonant gamma-photons.
2 cl, 5 dwg
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Authors
Dates
2024-07-22—Published
2023-12-14—Filed