Lasers won’t make noise and aren’t moving a physical mass that would create sound as it passes by.
Lasers won’t make noise and aren’t moving a physical mass that would create sound as it passes by.
The pure joy of putting a single joule of optical power into a sub nanosecond pulse.
For those not familiar with lasers, that’s a GW of instantaneous power that you can focus down to a micron sized spot.
youtu.be/Z1Xky_ermd4?si=1Luz0fuzm4kcwIwc
All that said, the successful laser weapons right now seem to all be anti drone/aircraft and they are typically using tracked CW (not pulsed) lasers with heating over time to avoid atmospheric lensing. Lots of challenges to overcome in getting pulsed energy a long way through air.
It might be hard, but with the processing power we can fit into microchips these days I’d say we fixed harder problems already. I mean, the controller needs at least two cameras or another methode of locating the target and estimating the distance, but I’d guess we could completely get rid of time of flight calculations as the light pulse would be instant for that matter.
But again: I’m just guessing here
It’s not easy but you can correct the atmosphere. This is done with guide stars and adaptive optics.
The bigger challenge is that for intense pulsed lasers, the standard laser profile causes them to self focus in air through nonlinear effects. To overcome this you need to make weird profiles like top hats that are much hard to get just right.
This is a fundamentally physical limitation that is pretty tricky to overcome.