WiFi light painting
nearfield.org
nearfield.org
I did a bit of research on the subject, and they don't seem to really exist. It's possible that the longer wavelength poses technical difficulties. The individual receptors are too big and you can't cram them together at a sufficient density. Also, the lensing and shielding needs to be completely re-thought.
There's a 2012 paper called "Portable Real-Time Microwave Camera at 24 GHz" but i couldn't access it (not in academia).
Also, try searching Synthetic Aperture Radar :) fun stuff
What you do for the rest of the spectrum is to take one antenna and move it around. As long as the signal is relatively static with respect to time, this has the same effect (and is much cheaper to implement.)
Why is this the case? Is it just that technology is further along for visible light because there's more economic incentive for a digital camera that replicates the human eye?
Is it a materials problem, where we haven't discovered arrangements of matter with the right properties (e.g. CCD's respond to visible wavelengths and are adaptable to semiconductor manufacturing techniques)?
Or is it something to do with fundamental physics like the wavelengths are a lot longer which requires detectors that are too large to be practical? Or maybe diffraction is a problem?
Also, you could use light painting to capture a time-varying signal: just do it a whole bunch of times in the same spot and turn them into individual frames in a video as in a time-lapse. It would just take a really long time. A motorized track for the sensor would make it a lot easier.
This is definitely time-relative. But you could use light-painting to capture that.
Just add a dimension; brightness, color, size. It just, obviously, requires more time. It won't be perfect, but that wasn't even remotely the point here.
I used to work on a radio system with a very large and powerful phased array transmitter, the ground mat being hundreds of metres on each side. We though it would be fun to stick a bunch of fluorescent tubes into the ground. In theory we should have been able to see the antenna beam sweeping across the ground mat, as it was steered in difference directions and the tubes lit up. It would have been a very cool demonstration, but like so many other projects we only talked about it.
I'd love to see that in 3D... maybe with drones flying around instead of a single human doing the measurements?