FIELD: communication equipment, in particular, long and very-long information transmission. SUBSTANCE: during transmission method involves generation and alternation of total vector potential which is equal to sum of vector current potential and cosmological vector potential . During reception method involves detection of physical effects caused by generation and presence of field of above-mentioned potential and its alternations. Generation and alternation of field of total vector potential , generation and transmission of information signal is achieved by means of application of alternating field of vector current potential , which is directed at angle of 90-270 degrees with respect to cosmological vector potential , to emitter which is located in transmitter in region of low levels of total potential and is directed towards signal receiver. Signal is received by means of detection of alternation in intensity of radioactive material decay or by means of detection of alternation in electric voltage at superconducting quantum interferometer (SQUID) which is located in signal receiver. Said alternation in intensity of radioactive material decay is caused by application of field of said total vector potential . Corresponding device which implements said method may have two designs. Transmitting part of device has transmitter with emitter and modulator and receiver of information signal. Emitter of transmitter is located in field of vector potential and modulator current. Sensitive element of receiver is designed as either container with beta-active material with detector of beta-decay intensity, for example, electron counter which is connected to system for analysis of characteristics of signals which are sent by intensity detector and detection of information signal. Alternatively, it may be designed as body which runs through inner hole in ring of superconducting quantum interferometer (SQUID), which is connected to system for analysis of characteristics signals which are sent from SQUID and detection of information signal. EFFECT: increased distance and increased speed of information transmission. 25 cl, 6 dwg
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Authors
Dates
1998-03-10—Published
1994-11-18—Filed