mfb said:
The inverse direction is known as
nantenna (and somewhere between hypothetical and possible) - if those can be constructed, the reverse direction might work as well.
I think this thread is really concerned with stretching the Classical regime over into what has, up till now, been the Quantum regime. I guess the boundary is fairly fuzzy and could stretch along with our inventiveness.
Not sure that 'the other way round' is feasible. As a 'receiver', the nantenna is a very clever passive device which they tell us can be more efficient than a PV cell (there must still be a small 'diode drop' or equivalent somewhere, to cause the rectifying action, though it will be much less than a conventional diode). (And the frequency doesn't reach the optical bands yet) As a simple rectifier, it is strictly a 'downhill' device - producing DC from AC. As a 'classical' device, it's definitely a step further than just using the thermal effect of received radiation as in a thermopile or radiometer.
Producing an alternating PD, in the classical sense (which is what you need for any transmitter) is a harder task and needs an amplifying component to switch or modulate a direct current. An atom, raised above its ground state by a DC power source with a beam of electrons in a discharge tube, does just what you want - one photon at a time. Electrons in the junction of an LED do the same. But this is a Quantum effect and not within your rules.
I was wondering about LED efficiency and I just found
this link about LEDs with 'over unity' efficiency - in terms of electrical power in and light power out. They take heat from the surroundings to make up the balance. Now that's the sort of efficiency that you can really only expect to get from a Quantum Device.
BTW, would synchrotron radiation be a suitable candidate for your idea? You can take a beam of electrons and make them follow a tight enough curve. That will produce EM of any frequency you want.