https://spie.org/news/photonics-focus/marapr-2022/harnessing...
https://www.nextplatform.com/2022/03/17/luminous-shines-a-li...
https://spie.org/news/photonics-focus/marapr-2022/harnessing...
https://www.nextplatform.com/2022/03/17/luminous-shines-a-li...
I don't know enough about computing hardware to know how feasible each component is to be refactored this way, but it is indeed exciting. You could almost imagine such a "photon computer" as a computer which uses little to no energy (at least for the actual computing part), is extremly lightweight due to lightweight components, and never gets hot!
Not really the same thing but still cool!
I'm not sure if they just decided the conventional wisdom that consumers would ruin the cable was wrong, or if they figured out how to make them idiot-proof.
They have 25gbe twinax SFP28s that, as far as I'm aware, have essentially identical performance specs to using optical SFP28s with fiber. The fiber is thinner and can go further, but it also is more fragile and limited on bends. Latency is almost entirely driven by the switch and the NIC.
Photons in fiber do not move meaningfully faster than signals in copper, and speed of light in short datacenters runs is not the limiting factor In latency. Any meaningful processing will happen in electronics and converting from copper to fiber introduces more latency.
There's a good paper on it here: https://www.commscope.com/globalassets/digizuite/2799-latenc...
Tldr coax actually is faster (0.77c) than optical fiber (0.67c).
My understanding is that it has nothing to do with the speed of light for short-run cables. 10GBase-T uses block encoding that adds a couple microseconds of latency (which dwarfs the impact of the speed of light at short distances) and fiber (including SFP+) doesn't need to.
Coax/twinax may not need the encoding schemes that twisted pair does, I'm not sure.
The solution has been to use fiber optic hubs with the same behavior you describe - copper cables on either end to connect the hardware to the computing unit and a long run of fiber in the middle to make up the required length.
Pretty cool stuff!
Entirely possible it's voltage drop, I don't know the exact hardware, but at 6 meters, it's probably signal rather than power.
I have no issues with data rate or packet loss at all.
Electronic signals in copper propagate at somewhere from 0.66-0.8c.
The big benefit of photons is that they don't experience electrical interference, so you can often get a lot more bandwidth out of a arbitrarily sized photonic medium than an electronic one.
The actual latency of photons vs electrons is generally not relevant.
Since the speed of light in a vacuum is the prohibitive speed limit of Relativity, I always felt we should develop a medium in which light moved faster than it did in a vacuum, and I swear I've read an article about such a material which was referred to in the article as "ruby," and the images of it reminded me of those glass things at the Fortress of Solitude in Superman (1978). If such a material exists, it would not only make photon computers very fast, but make it possible to violate causality without violating Relativity.