1 minute longer than the theoretical maximum period for which you can sustain an artificial wormhole
Qubit survives record 39 minutes at room temperature
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Re: Qubit survives record 39 minutes at room temperature
#12Silicon never ceases to amaze me. While much of the research in solid state physics these days is around novel materials like graphene, silicon continues to dominate solid-state applications including all conventional computer processors and most solar cells and will prove incredibly hard to unseat in these areas. Now it appears to be a leading contender for quantum computing platforms. It's an earth-abundant materia…
Re: Qubit survives record 39 minutes at room temperature
#13Silicon never ceases to amaze me. While much of the research in solid state physics these days is around novel materials like graphene, silicon continues to dominate solid-state applications including all conventional computer processors and most solar cells and will prove incredibly hard to unseat in these areas. Now it appears to be a leading contender for quantum computing platforms. It's an earth-abundant materia…
To illustrate what I mean, consider the fact that the Czochralski process [1] exists and that it means you can get huge, pure, relatively defect-free ingots of silicon (see [2]). With new materials, we're happy just to grow a few microns of the stuff, let alone something like that.
So you're right, silicon really is very incredible :) but we've reached the point now that the new innovations are in part possible by sheer momentum alone, like the billions of dollars of investment you mention. The big challenge is to develop new materials that initially (possibly for decades or more) are inferior to silicon but might ultimately unseat it. The only problem is that no one really knows what that material will be in advance. A lot of people right now are gambling on graphene, and from the amount of investment alone something interesting should come from it, but who knows if there's something else better out there just waiting for the attention it needs.
[1] http://en.wikipedia.org/wiki/Czochralski_process [2] http://en.wikipedia.org/wiki/File:Monokristalines_Silizium_f...
Re: Qubit survives record 39 minutes at room temperature
#14Logical qubits are made up of many physical qubits, with relatively short life times, to make one logical qubits with an infinite life time. The longer life time of logical qubits makes it considerably easier to perform long calculations and store information.
If anyone knows how easily quantum error correction can be applied to this system I would be interested in finding out.
Re: Qubit survives record 39 minutes at room temperature
#15Silicon never ceases to amaze me. While much of the research in solid state physics these days is around novel materials like graphene, silicon continues to dominate solid-state applications including all conventional computer processors and most solar cells and will prove incredibly hard to unseat in these areas. Now it appears to be a leading contender for quantum computing platforms. It's an earth-abundant materia…
Yes, very true, but this is in part because silicon is simply understood so well now. Trust me when I say we could do just as exciting things and more besides with other materials if we just understood them half as well! To illustrate what I mean, consider the fact that the Czochralski process [1] exists and that it means you can get huge, pure, relatively defect-free ingots of silicon (see [2]). With new materials,…
Re: Qubit survives record 39 minutes at room temperature
#16Re: Qubit survives record 39 minutes at room temperature
#171 minute longer than the theoretical maximum period for which you can sustain an artificial wormhole
Is this in fiction or fact? If fact, can you provide some reference?
[1] Quite enjoyable fiction. My canonically chronological SG viewing order for maximum enjoyment is available at https://docs.google.com/spreadsheet/pub?key=0AkwxWLA63pAmdG5...
Re: Qubit survives record 39 minutes at room temperature
#18Earlier quoted context omitted.
Yes, very true, but this is in part because silicon is simply understood so well now. Trust me when I say we could do just as exciting things and more besides with other materials if we just understood them half as well! To illustrate what I mean, consider the fact that the Czochralski process [1] exists and that it means you can get huge, pure, relatively defect-free ingots of silicon (see [2]). With new materials,…
Not that I disagree with what you wrote, I just want to point out that silicon dioxide is probably the most important reason silicon has reached such ubiquity in electronics. No other material has a native oxide as good as SiO2, even though the semiconductors themselves have superior properties than silicon.
Re: Qubit survives record 39 minutes at room temperature
#19Silicon never ceases to amaze me. While much of the research in solid state physics these days is around novel materials like graphene, silicon continues to dominate solid-state applications including all conventional computer processors and most solar cells and will prove incredibly hard to unseat in these areas. Now it appears to be a leading contender for quantum computing platforms. It's an earth-abundant materia…
Yes, very true, but this is in part because silicon is simply understood so well now. Trust me when I say we could do just as exciting things and more besides with other materials if we just understood them half as well! To illustrate what I mean, consider the fact that the Czochralski process [1] exists and that it means you can get huge, pure, relatively defect-free ingots of silicon (see [2]). With new materials,…
Re: Qubit survives record 39 minutes at room temperature
#20Thats great! I need to read the paper but if that is the life time of the physical qubit then it is much larger then what is typically considered needed for using quantum error correction to make logical qubits. Logical qubits are made up of many physical qubits, with relatively short life times, to make one logical qubits with an infinite life time. The longer life time of logical qubits makes it considerably easier…
Single qubit operations have been shown to be on the order of 10's of microseconds for P nuclear spins in Si. (Unfortunately behind paywall, http://www.nature.com/nature/journal/v496/n7445/full/nature1...)