Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
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Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
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Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#2Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#3Very interesting, and amazing technology. But… How is it unjammable? Couldn’t you just generate a big magnetic field?
Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#4Very interesting, and amazing technology. But… How is it unjammable? Couldn’t you just generate a big magnetic field?
Magnetic field drops off by an inverse-cubed law (as opposed to inverse-squared for RF). So it would be a lot more impractical to cover large volumes.
Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#5Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#6Very interesting, and amazing technology. But… How is it unjammable? Couldn’t you just generate a big magnetic field?
Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#7Very interesting, and amazing technology. But… How is it unjammable? Couldn’t you just generate a big magnetic field?
/Jk
Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#8Re: Lockheed Martin Dark Ice: a quantum magnetometer geopositioning system
#9Earlier quoted context omitted.
Magnetic field drops off by an inverse-cubed law (as opposed to inverse-squared for RF). So it would be a lot more impractical to cover large volumes.
Thanks. I would still be curious to know how the strength of an artificial magnetic field at a range of say 10 km compares to the order of magnitude of local variations they are talking about in the earth’s magnetic field.