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Google Claims They Have Reached Quantum Computing

Google: Quantum Computing

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Left: Artist's rendition of the Sycamore processor mounted in the cryostat. (Full Res Version; Forest Stearns, Google AI Quantum Artist in Residence) Right: Photograph of the Sycamore processor. (Full Res Version; Erik Lucero, Research Scientist and Lead Production Quantum Hardware) Image from Google AI Blog.

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Its quantum processor has been able to complete in minutes calculations that would take thousands of years with a supercomputer.

 

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Google's 54-qubit Sycamore chips took just 200 seconds (three minutes and 20 seconds) to perform calculations that would take the world's fastest supercomputer 10,000 years to complete.

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Process of Quantum Computing. Image from Google AI Blog.

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"This dramatic increase in speed compared to all known classical algorithms is an experimental realization of quantum supremacy for this specific computational task, heralding a much-anticipated computing paradigm." Frank Arute from Google AI.

 

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"Quantum computers are prone to errors, yet our experiment showed the ability to perform a computation with few enough errors at a large enough scale to outperform a classical computer." CEO Sundar Pichai

 

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The recent advancements that have been made could have huge implication for future technology, but you probably shouldn't expect to find a quantum chip in your net laptop or desktop computer.

 

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Quantum computing is prohibitively expensive, but that's not all; at least for the foreseeable future, quantum computers will only be used for intensive, highly-specific tasks and artificial intelligence.

 

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IBM disagrees with Google's claims, suggesting that they are overblown. The company says that: "an ideal simulation of the same task can be performed on a classical system in 2.5 days and with far greater fidelity". IBM even goes as far as to suggest that this is a "conservative, worst-case estimate", and could even be improved upon.

IBM also says that the claims are misleading because, among other things, "quantum computers will never reign 'supreme' over classical computers, but will rather work in concert with them".

 

Source: Techradar.com

 

 IBM: Response To Google's Claim

IBM building and logo

Image from Regmedia.co.uk

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IBM says that Google’s mistakenly thinking that the RAM storage requirements in a traditional computer would be massive – too massive to run quickly. In fact, IBM says, if you take into account the fact that classical computers can access huge amounts of both RAM and hard disk space, that 10,000 years drops dramatically.

 

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"We argue that an ideal simulation of the same task can be performed on a classical system in 2.5 days and with far greater fidelity." IBM researchers Edwin Pednault, John Gunnels, and Jay Gambetta

 

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IBM says that’s actually a “worst-case estimate,” and it could probably be done faster. In addition, IBM researchers add, using phrases like “quantum supremacy” is potentially misleading. It exacerbates quantum computing hype, they say, and misrepresents a future in which both classical and quantum computers will work side by side.

 

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10,000 years is a lot of days. 3.65 million of them, to be exact (well, if you don’t account for leap years). That’s a lot more than 2.5 days: about 1.5 million times more. To be precise, it’s 1,460,000 times more.

Which is almost 150 million percent more.

Source: Forbes.com

 

If this is true, we will see quantum pc sooner than we thought and this means the end of Moore's Law is coming to an end faster than predicted. IBM claims Google is making things up, but we will never know until this is completed and shown to public. It's good to speculate how fast quantum computing can be compared to classical computing.

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its only going to be faster for very specific things so i dont think quantum computer will be the end of classical computers but rather for computing some niche stuff

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2 minutes ago, spartaman64 said:

its only going to be faster for very specific things so i dont think quantum computer will be the end of classical computers but rather for computing some niche stuff

To crack encryption keys.

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Maybe this is how stadia can predict the future with "great accuracy" 

ƆԀ S₱▓Ɇ▓cs: i7 6ʇɥפᴉƎ00K (4.4ghz), Asus DeLuxe X99A II, GT҉X҉1҉0҉8҉0 Zotac Amp ExTrꍟꎭe),Si6F4Gb D???????r PlatinUm, EVGA G2 Sǝʌǝᘉ5ᙣᙍᖇᓎᙎᗅᖶt, Phanteks Enthoo Primo, 3TB WD Black, 500gb 850 Evo, H100iGeeTeeX, Windows 10, K70 R̸̢̡̭͍͕̱̭̟̩̀̀̃́̃͒̈́̈́͑̑́̆͘͜ͅG̶̦̬͊́B̸͈̝̖͗̈́, G502, HyperX Cloud 2s, Asus MX34. פN∩SW∀S 960 EVO

Just keeping this here as a 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̌̅̒̾̈́̆͌̌̾̎̽̐̅̏́̈̔͛̀̋̃͊̒̓͗͒̑͒̃͂̌̄̇̑̇͛̆̾͛̒̇̍̒̓̀̈́̄̐͂̍͊͗̎̔͌͛̂̏̉̊̎͗͊͒̂̈̽̊́̔̊̃͑̈́̑̌̋̓̅̔́́͒̄̈́̈̂͐̈̅̈̓͌̓͊́̆͌̉͐̊̉͛̓̏̓̅̈́͂̉̒̇̉̆̀̍̄̇͆͛̏̉̑̃̓͂́͋̃̆̒͋̓͊̄́̓̕̕̕̚͘͘͘̚̕̚͘̕̕͜͜͝͝͝͠͝͝͝͝͠ͅS̷̢̨̧̢̡̨̢̨̢̨̧̧̨̧͚̱̪͇̱̮̪̮̦̝͖̜͙̘̪̘̟̱͇͎̻̪͚̩͍̠̹̮͚̦̝̤͖̙͔͚̙̺̩̥̻͈̺̦͕͈̹̳̖͓̜͚̜̭͉͇͖̟͔͕̹̯̬͍̱̫̮͓̙͇̗̙̼͚̪͇̦̗̜̼̠͈̩̠͉͉̘̱̯̪̟͕̘͖̝͇̼͕̳̻̜͖̜͇̣̠̹̬̗̝͓̖͚̺̫͛̉̅̐̕͘͜͜͜͜ͅͅͅ.̶̨̢̢̨̢̨̢̛̻͙̜̼̮̝̙̣̘̗̪̜̬̳̫̙̮̣̹̥̲̥͇͈̮̟͉̰̮̪̲̗̳̰̫̙͍̦̘̠̗̥̮̹̤̼̼̩͕͉͕͇͙̯̫̩̦̟̦̹͈͔̱̝͈̤͓̻̟̮̱͖̟̹̝͉̰͊̓̏̇͂̅̀̌͑̿͆̿̿͗̽̌̈́̉̂̀̒̊̿͆̃̄͑͆̃̇͒̀͐̍̅̃̍̈́̃̕͘͜͜͝͠͠z̴̢̢̡̧̢̢̧̢̨̡̨̛̛̛̛̛̛̛̛̲͚̠̜̮̠̜̞̤̺͈̘͍̻̫͖̣̥̗̙̳͓͙̫̫͖͍͇̬̲̳̭̘̮̤̬̖̼͎̬̯̼̮͔̭̠͎͓̼̖̟͈͓̦̩̦̳̙̮̗̮̩͙͓̮̰̜͎̺̞̝̪͎̯̜͈͇̪̙͎̩͖̭̟͎̲̩͔͓͈͌́̿͐̍̓͗͑̒̈́̎͂̋͂̀͂̑͂͊͆̍͛̄̃͌͗̌́̈̊́́̅͗̉͛͌͋̂̋̇̅̔̇͊͑͆̐̇͊͋̄̈́͆̍̋̏͑̓̈́̏̀͒̂̔̄̅̇̌̀̈́̿̽̋͐̾̆͆͆̈̌̿̈́̎͌̊̓̒͐̾̇̈́̍͛̅͌̽́̏͆̉́̉̓̅́͂͛̄̆͌̈́̇͐̒̿̾͌͊͗̀͑̃̊̓̈̈́̊͒̒̏̿́͑̄̑͋̀̽̀̔̀̎̄͑̌̔́̉̐͛̓̐̅́̒̎̈͆̀̍̾̀͂̄̈́̈́̈́̑̏̈́̐̽̐́̏̂̐̔̓̉̈́͂̕̚̕͘͘̚͘̚̕̚̚̚͘̕̕̕͜͜͝͠͠͝͝͝͝͠͝͝͝͠͝͝͝͝͝͝ͅͅͅī̸̧̧̧̡̨̨̢̨̛̛̘͓̼̰̰̮̗̰͚̙̥̣͍̦̺͈̣̻͇̱͔̰͈͓͖͈̻̲̫̪̲͈̜̲̬̖̻̰̦̰͙̤̘̝̦̟͈̭̱̮̠͍̖̲͉̫͔͖͔͈̻̖̝͎̖͕͔̣͈̤̗̱̀̅̃̈́͌̿̏͋̊̇̂̀̀̒̉̄̈́͋͌̽́̈́̓̑̈̀̍͗͜͜͠͠ͅp̴̢̢̧̨̡̡̨̢̨̢̢̢̨̡̛̛͕̩͕̟̫̝͈̖̟̣̲̖̭̙͇̟̗͖͎̹͇̘̰̗̝̹̤̺͉͎̙̝̟͙͚̦͚͖̜̫̰͖̼̤̥̤̹̖͉͚̺̥̮̮̫͖͍̼̰̭̤̲͔̩̯̣͖̻͇̞̳̬͉̣̖̥̣͓̤͔̪̙͎̰̬͚̣̭̞̬͎̼͉͓̮͙͕̗̦̞̥̮̘̻͎̭̼͚͎͈͇̥̗͖̫̮̤̦͙̭͎̝͖̣̰̱̩͎̩͎̘͇̟̠̱̬͈̗͍̦̘̱̰̤̱̘̫̫̮̥͕͉̥̜̯͖̖͍̮̼̲͓̤̮͈̤͓̭̝̟̲̲̳̟̠͉̙̻͕͙̞͔̖͈̱̞͓͔̬̮͎̙̭͎̩̟̖͚̆͐̅͆̿͐̄̓̀̇̂̊̃̂̄̊̀͐̍̌̅͌̆͊̆̓́̄́̃̆͗͊́̓̀͑͐̐̇͐̍́̓̈́̓̑̈̈́̽͂́̑͒͐͋̊͊̇̇̆̑̃̈́̎͛̎̓͊͛̐̾́̀͌̐̈́͛̃̂̈̿̽̇̋̍͒̍͗̈͘̚̚͘̚͘͘͜͜͜͜͜͜͠͠͝͝ͅͅͅ☻♥■∞{╚mYÄÜXτ╕○\╚Θº£¥ΘBM@Q05♠{{↨↨▬§¶‼↕◄►☼1♦  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Eventually consumer processors (including GPUs) might contain some form of quantum computing component, similar to how some processors also contain a small GPU.

The reason being that, while it is really only better at very specific problems, some of those problems show up in nearly every video game, namely optimization problems. Such problems also have applications in CAD/CAE.

However, quantum computers will never replace classical computers. There will always be tasks that quantum computers simply can't reliably do, that classical computers do with ease (such as, well, boolean logic, for example).

Additionally, the article fails to mention either the size, cost, or reliability/repeatability of Googles 54 qubit machine. Rest assured, eventually is a long time away.

ENCRYPTION IS NOT A CRIME

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Next Google reveals a quantum game via quantum streaming service. 

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IBM sounds like they're jealous, probably because they weren't able to claim this first. 

"You're my dearest friend & my love. You lit my path through darkness & I'll stand with you...to whatever end." -Leliana (DAO).

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A quantum computer will never run Windows. It’s just specialty tech for companies with more cash than the entire working class.

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Yeah, and how much does one of these processors cost upfront? Then how much do they cost to operate and use? All for more errors and a little faster. This is totally impractical, IBM is right. This will be used along side normal computers, not replacing them.

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7 hours ago, DrMacintosh said:

A quantum computer will never run Windows. It’s just specialty tech for companies with more cash than the entire working class.

I now wonder how different the operating systems for non-quantum computing computers and the quantum computing ones would be?

✨FNIGE✨

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10 minutes ago, SlimyPython said:

I now wonder how different the operating systems for non-quantum computing computers and the quantum computing ones would be?

Yes

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Why must we always have an "artists impression" of this shit, I want to see the actual computer.

Grammar and spelling is not indicative of intelligence/knowledge.  Not having the same opinion does not always mean lack of understanding.  

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6 minutes ago, Ultrasnoop said:
i still cant comprehend how they work though even after watching this

Some physicists are of the opinion if you think you understand it then you very likely don't. I think I am in the same boat, but it's more likely I just don't comprehend even some of the basics let alone the actual workings of it.  I'll stick to conventional silicon for now.  It gives me far less headaches.

 

 

Grammar and spelling is not indicative of intelligence/knowledge.  Not having the same opinion does not always mean lack of understanding.  

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I wonder did they reverse engineer D-Wave's quantum computer that they bought a few years ago?

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On 10/24/2019 at 12:01 AM, straight_stewie said:

Eventually consumer processors (including GPUs) might contain some form of quantum computing component, similar to how some processors also contain a small GPU.

The reason being that, while it is really only better at very specific problems, some of those problems show up in nearly every video game, namely optimization problems. Such problems also have applications in CAD/CAE.

However, quantum computers will never replace classical computers. There will always be tasks that quantum computers simply can't reliably do, that classical computers do with ease (such as, well, boolean logic, for example).

Additionally, the article fails to mention either the size, cost, or reliability/repeatability of Googles 54 qubit machine. Rest assured, eventually is a long time away.

For now it will probably only be for say, encryption key generation. AFAIK, you could theoretically use it for something fuzzy, like say raycasting in a game, because it does not need to be "perfect", only quick and efficient. But I doubt any other type of use case exists for consumer use!

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9 hours ago, mr moose said:

Why must we always have an "artists impression" of this shit, I want to see the actual computer.

Um. I think it is it. They just either cut out the background (would be mounted in a cooled chamber IIRC the LTT video) and also not blue/gold highlighted for colourful book cover art. XD

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3 hours ago, TechyBen said:

AFAIK, you could theoretically use it for something fuzzy, like say raycasting in a game ... But I doubt any other type of use case exists for consumer use!

Pathfinding is an optimization problem. Not all, but almost all, video games require some type of pathfinding. There are also potentially some areas where quantum optimization algorithms could be used in conjunction with AI to make better opponents, especially in strategy games with inventories, production lines, or similar types of things. That's just the first two examples I can come up with.

There's a whole lot more to video games than just the graphics.

ENCRYPTION IS NOT A CRIME

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1 hour ago, straight_stewie said:

Pathfinding is an optimization problem. Not all, but almost all, video games require some type of pathfinding. There are also potentially some areas where quantum optimization algorithms could be used in conjunction with AI to make better opponents, especially in strategy games with inventories, production lines, or similar types of things. That's just the first two examples I can come up with.

There's a whole lot more to video games than just the graphics.

I agree. But the money/development/return aint really in those things (see latest games "AI" as an example ;) )

 

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8 hours ago, TechyBen said:

Um. I think it is it. They just either cut out the background (would be mounted in a cooled chamber IIRC the LTT video) and also not blue/gold highlighted for colourful book cover art. XD

 

the left image is an artist rendition, the right is a close up of one of the chips/cores (whatever they call it in one of these).  I want to see the actual chamber, or cluster of chips, or rack or whatever the actual thing is working inside of. 

 

I ask everyone, what's more impressive,  a photo of well managed server racks with flashing lights (that mean something)  or a pastel version of something from the mind of Joules Verne?

Grammar and spelling is not indicative of intelligence/knowledge.  Not having the same opinion does not always mean lack of understanding.  

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9 minutes ago, mr moose said:

 

the left image is an artist rendition, the right is a close up of one of the chips/cores (whatever they call it in one of these).  I want to see the actual chamber, or cluster of chips, or rack or whatever the actual thing is working inside of. 

 

I ask everyone, what's more impressive,  a photo of well managed server racks with flashing lights (that mean something)  or a pastel version of something from the mind of Joules Verne?

Image result for d wave computer"

heres a D wave quantum computer that this is probably based on

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On 10/25/2019 at 9:34 PM, mr moose said:

 

the left image is an artist rendition, the right is a close up of one of the chips/cores (whatever they call it in one of these).  I want to see the actual chamber, or cluster of chips, or rack or whatever the actual thing is working inside of. 

 

I ask everyone, what's more impressive,  a photo of well managed server racks with flashing lights (that mean something)  or a pastel version of something from the mind of Joules Verne?

No, I mean it's "artistic" in that they recoloured it, but that's the actual setup:

 

00_m.png

It might be a render, as the real thing is sitting in a nitrogen tank/clean room. But it's what it looks like.

PS, here, before it was finished and available for artistic "renders":

 

(You test my patience all the time. But I consider it good training. ? )

[I hate "new web 2.0" too... copy/paste failed, and I got my screen cap :( and no way to delete it] Thanks mods!

 

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