6 ms·
Would it? If the laser is able to focus on the rocket for multiple seconds. Then it'd just need to pack a fraction of that energy over a sustained duration. Whi
by cobookman 5y ago
Would it? If the laser is able to focus on the rocket for multiple seconds. Then it'd just need to pack a fraction of that energy over a sustained duration. Which sounds reasonable.
- CapitalistCartr 5y agoThe rocket is moving at perhaps mach 4+. The laser has to strike a singular spot. So holding focus for multuple seconds is an as-yet-unsolved problem. Of course, hitting an incoming missile at all is at the edge of current capability.
- adolph 5y agoI was interested in validating or invalidating the mach 4 number. I guess it depends on the specific rocket, but the 122 mm M-21OF-M Rocket, sometimes referred to as Katyusha (although that was the name of a specific launcher, not the rocket [0]) is 660 m/s or about mach 2 [1]. 0. https://en.wikipedia.org/wiki/Katyusha_rocket_launcher https://en.wikipedia.org/wiki/Katyusha_rocket_launcher 1. https://kintex.bg/product-4-77 https://kintex.bg/product-4-77
- CapitalistCartr 5y agoThat's a good example of the problem. That's about 660 meters per second. Instead of "multiple seconds", the laser has about 1/100 second to penetrate the skin. Of a missile that's shaking, twisting, rocking.
- lr1970 5y agoMost likely, a missile will be rotating about its axis of symmetry making illuminating a single spot possible only in a short pulse mode.
- endymi0n 5y agoIndeed, most people are very surprised that a stick of dynamite has just the energy equivalent of a Snickers bar. Spread the energy release over more than just a few microseconds and you have a very different profile.
- somewhereoutth 5y agoIndeed, and going the other way, a snickers bar will get you surprising far across the English Channel in a rowing boat.
- awakeasleep 5y agoIt’ll take you to Cardiff on a bicycle!