My understanding from just looking quickly at the paper is that they don't modulate all the wavelengths independently, meaning that they duplicate the info they send several times to reach that high terabit rate. The laser source is only one part of a transceiver, and once you have 400+ independent modulators/receivers, the laser source becomes a much smaller concern when it comes to make it practical. A conventional laser source can be made very compact too (in a semiconductor platform) and integrated with the rest of the transceiver on the same chip. This is still where the industry is putting its efforts. These micro-combs come with some disadvantages too, relating to stability, low SNR, and uneven power among the wavelengths (that then need to be equalized).
Researchers achieve optical data transmission speed of 44.2 terabits per second
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Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#42Is anyone knowledgable on the implications of the underlying tech once it gets commercialized? Obviously things like game streaming would be improved.
Aren’t gamers primarily concerned with latency rather than speed ?
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#43Earlier quoted context omitted.
Aren’t gamers primarily concerned with latency rather than speed ?
They said game streaming, which makes me think s/he's talking about things like Twitch and Mixer, livestreaming platforms that do depend on throughput for high quality video.
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#44I like like the bottle neck in the future will be Harddrive/SSD file read/write speeds. Honestly, I'd love to have my hands on a terabyte drive with 1TBps speeds.
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#45I like like the bottle neck in the future will be Harddrive/SSD file read/write speeds. Honestly, I'd love to have my hands on a terabyte drive with 1TBps speeds.
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#46I like like the bottle neck in the future will be Harddrive/SSD file read/write speeds. Honestly, I'd love to have my hands on a terabyte drive with 1TBps speeds.
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#47And even it that speed, I bet pre-roll ads on videos still end up buffering.
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#48Is anyone knowledgable on the implications of the underlying tech once it gets commercialized? Obviously things like game streaming would be improved.
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#49Earlier quoted context omitted.
We will be able to make comments complaining about bloated JavaScript libraries at lightning speed.
You aren't kidding, the bloated JavaScript libraries will make my browsing session feel like a blistering 55.6k bps instead of the piddly 11.4k bps they do now.
Re: Researchers achieve optical data transmission speed of 44.2 terabits per second
#50It is not particularly hard to do a "hero" experiment like this. Shannon limits to fiber transmission have pretty much been reached experimentally a long time ago. Muxing several wavelengths together is also of course the backbone of fiber optics transmission since its very origin. The current buzz in the field is to use micro-combs like they did as opposed to an array of lasers to provide the multiple wavelengths -…
Regarding your comment about these hero experiments not being hard, I would argue it's actually the other way around, we are now so close to the limits that it is becoming incredibly hard to observe further gains. Also regarding not modulating lines independently, this is the common way how everyone (even the industry labs) demonstrates these systems, using 100 independent transceivers would be prohibitevely expensive, moreover research has shown that you actually receive a penalty from using this approach so the demonstration is a lower bound on what could be achieved with individual tx modules.