5 ms·
Feynmann is very clear that the photons bouncing off a mirror are not the same ones that hit it. They are absorbed by electric oscillators (free electrons in th
by adonovan 2y ago
Feynmann is very clear that the photons bouncing off a mirror are not the same ones that hit it. They are absorbed by electric oscillators (free electrons in the material) and destroyed; then new ones are created and emitted.
He's also careful enough to point out that electrons don't really have an identity that would allow you to meaningfully define "not the same". :)
- dylan604 2y agoElectrons? We were just told that there is only one single electron in yesterday's posts. It's almost like they don't know what an electron is
- doodlebugging 2y agoI believe they're right about there being only one single electron. I tried to start my Pathfinder yesterday and it was dead as a doornail. None of the dash lights lit and there was not even a click from the starter. Someone else must've been using that electron though since I tried again a few minutes later and it cranked right up. I had my turn with it so I'm not mad at all.
- westmeal 2y agoUm maybe check your battery terminals for corrosion :)
- doodlebugging 2y agoI covered all those bases. I'm not 100% sure what happened but when I initially tried to start the vehicle I had it connected to a solar battery maintainer in full sunlight. It should've had bazillions of photons sacrificing part of themselves to be stored electrons but instead I got nothing. After disconnecting that from the battery and testing all the fuses I made another attempt to start it up and it worked fine. It's possible that the voltage output of the panel swamped the voltage expected by the ECU and it refused to energize to save the system from electrical damage by overvoltage. Or maybe that single electron hadn't quite made it to my battery on my first attempt. That's one busy e.
- westmeal 2y agoI find pouring electrons into a funnel usually helps by avoiding an electron spill all over your battery. Glad it works tho!
- dylan604 2y agoI wonder if that's how they get electrons into the particle accelerators too?
- doodlebugging 2y agoThey gotta get'em somewhere. Seems easy enough to do it like that.
- rkagerer 2y agoYeah but they just don't make 'em like they used to. MBA's took over and cut corners everywhere - sourcing production from subpar isotopes, skimping down how much charge you get in each one, shrinkflation schemes packing less in every bag of amps, particle dilution with off-brand fake leptons... QA was downsized 'till all you got was beta junk that decays in no time. Now they just rent seek that single universal virtual electron, unlocked by keys you're forced to tie to the cloud, and it can be glitchy and pop in and out of existence from time to time especially driving through tunnels. Sorry to hear about your car, try upgrading to the new positron model on the roadmap for next year, they launched the presale NFT last week.
- doodlebugging 2y agoSo sorry for the delayed reply. I had to hit several O'Reilly stores to find someone who had any idea what I was looking for. I finally found one with a college-looking kid behind the counter instead of all those old farts like me and after I explained what I wanted he knew just which aisle it was on. Turns out that an electron funnel isn't a fancy new tool. Instead, I already have several of them in my shop but just didn't make the connection. It became clear though when he handed me the plastic funnel after rubbing it through his hair vigorously for a few seconds and I got shocked by the crackling electrons streaming from the funnel to my fingers. If this power thing ever happens to my battery again I'm just gonna get the big funnel from the set, rub it through the remnants of my hair and pour some electrons at it till it charges enough to start the engine. Thanks for this suggestion about a new way to use an old tool.
- mmmBacon 2y agoIt’s a true statement that they don’t know what the electron is. In the standard model the electron is a point particle with no volume.
- out_of_protocol 2y ago> only one single electron > an electron THE electron? /s
- yencabulator 2y agoI feel like this applies: https://www.youtube.com/watch?v=MO0r930Sn_8 https://www.youtube.com/watch?v=MO0r930Sn_8 (Feynman on how certain questions can be very hard to answer)
- AgentME 2y agoElectrons aren't unique in not having identities. Photons of the same wavelength are similarly fungible if I remember right, though it's a little more defensible to call the reflected light not the same photons since the original photons are transformed to something we don't call photons before photons are produced again.
- adonovan 2y agoYeah, I meant to say "photon" in my last sentence; but the point is equally true for electrons.
- doodlebugging 2y agoBut at a reflection event you aren't producing a new photon, you are only reflecting a portion of the original determined by the refractive indices of the reflection interface. At that interface, part of the original photon is reflected and the rest is transmitted across the interface as a new photon and both have a modified bandwidth relative to the parent photon. So the one you see reflected is the same photon after modification by the medium it traversed and the transmitted components escape your view unless you are monitoring the other side of the medium.
- wizzwizz4 2y agoThat would imply a frequency shift, which clearly doesn't happen (mirrors don't redshift the light that hits them).
- ASalazarMX 2y agoI balked at that too, because infinite mirrors and mirror houses also don't show any wavelenght shift no matter how many reflections they do. They do change perceived amplitude, as no mirror is perfectly reflective.
- Jerrrry 2y agoBlue, but it's more to do with manufacturing defects and the minerals used for the mirrors.
- doodlebugging 2y agoI wonder about the all the photons lost in fiber optic installations. What happens to them in their short lives? There must be a creation and an extinction event. A photon jumps into the glass fiber and travels until it encounters an opto-electric coupler where the photon craps out and is converted to an energized stream of electrons, or maybe it borrows the only real electron in the universe for an instant as it flips across the coupler to the next glass fiber where a new photon is born, only to flare out at the next junction.
- lolc 2y agoMy understanding is that photons don't have a life the way we do. They move at the speed of light and thus time does not advance for them. They cannot change between emission and absorption, no matter the distance. Always bends my mind to think about it.
- rvbissell 2y ago> They move at the speed of light and thus time does not advance for them. Isn't it more accurate to say that photons move at the speed of causality, when the medium is a pure vacuum? Because in some other medium like glass, the speed of light is slower than the speed of causality. So my follow-up question is: do slower photons (such as those propagating through a fiber-optic strand, or water) then experience the advancement of time?
- Kranar 2y agoThere is no such thing as slow photons, photons always travel at the speed of light. When light enters a medium there are two mostly (but not entirely) equal ways to think about what happens, one is to view light as a purely electromagnetic wave that interacts with atoms and causes the atoms to oscillate. This oscillation produces its own electromagnetic wave that interferes with the original wave. The result of this interference will be an electromagnetic wave with the same frequency, same amplitude, and travelling in the same direction as the incoming light but shifted backwards and it's that shift backwards that gives the appearance of light slowing down. That explanation is pretty good and accounts for almost everything except for the latency of light through a medium. If that's what you want to model, then it's better to think of light as made up of photons instead of being a wave, and then when photons enter a material they no longer exist as independent particles but through a process of absorption and reemission by electrons in the material become particles called polaritons. Polaritons do have mass and hence travel slower than the speed of light. Neither of these explanations are perfect, but the full explanation is ridiculously complicated and there's no suitable metaphor for it. If you are interested in knowing the edge latency of light through a medium, then the polariton explanation is appropriate. If you want to know the "bandwidth" explanation of light through a medium, then the wave explanation is appropriate.
- nullserver 2y agoIt could be the same electron after all. Although probably not. One electron theory. https://youtu.be/9dqtW9MslFk?si=qdWGUyJnDRCOns9F https://youtu.be/9dqtW9MslFk?si=qdWGUyJnDRCOns9F
- credit_guy 2y agoDoes Feynman say that? If an electron absorbs a photon, why would it create another one of the same frequency, and with polarization perfectly rotated by 90°?
- candiodari 2y agoBecause of the layout of the electron orbitals.
- credit_guy 2y agoFeynman certainly didn’t say anything like that, or only the photons with certain frequencies would reflect, those corresponding to the energy differences between various orbitals.