4 ms·
No information on what kind of energy levels these can achieve? i.e., keV or MeV?
by ooterness 2y ago
No information on what kind of energy levels these can achieve? i.e., keV or MeV?
- PeterCorless 2y ago"Using a more sophisticated silicon structure, still for subrelativistic electrons (96.3 keV), the highest gradient achieved is 370 MV/m over a 5.4 μm interaction length in the dual pillar silicon structure with two-sided illumination" — Source: https://opg.optica.org/oe/fulltext.cfm?uri=oe-30-1-505&id=466290 https://opg.optica.org/oe/fulltext.cfm?uri=oe-30-1-505&id=46...
- baq 2y agoI heard about photon rockets, I heard about ion drives, but an electron rocket motor is new. Can't be bothered to do the math here but Isp doesn't sound too bad eyeballing it...? 1 eV is 5.94 × 10^6 m/s but multiplying this by 96.3k looks like it needs a relativistic correction.
- Out_of_Characte 2y agoWe've got no shortage of electron beams to use in an engine. The problem is that the engine runs out of electrons very quickly and will become positively charged. Meaning all your propellant will come flying back. You would have to capture 'free' electrons from space to make use of it.
- photochemsyn 2y ago"These on-chip devices accelerate sub-relativistic electrons of initial energy 83.4 keV by 1.21 keV over 30 μm, providing peak acceleration gradients of 40.3 MeV/m." (Sapra et al. Science 2020) Lasers on a chip plus photonic waveguide technology, oh my! https://arxiv.org/pdf/1905.12822 https://arxiv.org/pdf/1905.12822 [edit this is an earlier version see other comment]