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In the immediate short term, the power level supported is too low for the real shiny applications that everyone talks about. But the main one that is screaming
by Fordec 3y ago
In the immediate short term, the power level supported is too low for the real shiny applications that everyone talks about.
But the main one that is screaming at me for this technology sitting in front of us is SQUID sensors and RF antennas that will operate in the lower power range of the potential applications spectrum.
- hatsunearu 3y agohow does superconductivity benefit RF antennas? AFAIK loss at AC still occurs with superconductors because the dielectric loss through the materials still exists.
- floxy 3y agohttps://en.wikipedia.org/wiki/Superconducting_radio_frequency https://en.wikipedia.org/wiki/Superconducting_radio_frequenc...
- superkuh 3y agoSearch "superdirective superconducting antenna". With normal conductors the directivity of an antenna depends on how many wavelengths it spans; the summation of the currents over the effective aperture. With superconducting materials you can exploit the weirdness in current distribution to make very directional antennas that are small relative to the wavelength. It could be a game changer for making efficient directional small receive antennas. Normally electrically small antennas are just super inefficient but it's made up for either on the transmit side (like with high power AM radio) or with most of the gain coming from some low noise amplifier (like small UHF wireless devices).