Where are we at with quantum computing? – Cosmos
Aberdeen, Maryland in the late 1940s was an exciting place to be. They had a computer so powerful and so energy intensive that there were rumours that when it switched on, the lights in Philadelphia dimmed.
The computer called the ENIAC took up an area almost the size of a tennis court. It needed 18,000 vacuum tubes and had cords thicker than fists crisscrossing the room connecting one section to another.
Despite its size, today its less impressive. Its computing power would be dwarfed by a desk calculator.
Professor Tom Stace, the Deputy Director of the ARC Centre of Excellence in Engineered Quantum Systems (EQUS) believes that quantum computing is best thought of not as computers like we know them today, but as big lumbering systems like the ENIAC.
ENIAC was the first digital computer, said Stace.
You see engineers programming, but that meant literally unplugging cables and plugging them into these gigantic room-size things. Thats sort of what a quantum computer looks like now. Its literally bolt cables that people have to wire up and solder together.
To understand where were at with quantum computing currently, you first have to understand their potential.
Right now, quantum computing is still in the very earliest stages of its development, despite the huge hype around quantum suggesting otherwise.
The ENIAC was useful despite its bulk, allowing programmers to do thousands of mathematical problems a second, and computations for the hydrogen bomb.
On the other hand, quantum computers are not yet suitable even for the niche roles that scientists hope they will one day fill. The idea that quantum computers might one day replace your laptop is still basically in the realm of science fiction.
But that doesnt mean that they cant one day be useful.
We know that quantum computers can solve a few sets of problems in a way that that ordinary computers just cant do, says Stace.
The famous one is factoring numbers. Finding the prime factors of a large number is genuinely a very difficult mathematical problem.
Because banks, governments, and anyone who wants to keep something secret all use factoring prime numbers for their digital security, our security systems would fall apart as soon as someone created a quantum computer that could outpace ordinary computers. Groups like the Australian Cyber Security Centre have already started putting in plans for when this eventually occurs.
Quantum computers could also fundamentally change the chemistry field, with more processing power to simulate better catalysts, fertilisers, or other industrial chemicals.
But this can only happen if quantum computers move beyond the realm they are in now what scientists call Noisy Intermediate Scale Quantum.
Computers are simply devices that can store and process data. Even the earliest computers used bits, a basic unit of information that can either be on or off.
Quantum computers are also devices that can store and process information, but instead of using bits, quantum computers use quantum bits or qubits, which dont just turn on and off but also can point to any point in between.
The key to quantum computers huge potential and also problems are these qubits.
Groups like IBM and Google have spent millions of dollars on creating quantum computers, no doubt buoyed by the riches for the company that comes first.
Their efforts so far have been relatively lacklustre.
The machines are clunky, each wire and qubit need to be individually placed or set up manually. The whole thing needs to be set up inside a freezer cooled down to almost absolute zero.
Despite all these safeguards the machines still have enough errors that its almost impossible to tell if the machines worked, or if these million-dollar systems are just producing random noise.
And even that is impressive to scientists like Stace.
Twenty years ago, if you had one qubit you got a Nature paper. Fifteen years ago, two or three qubits got you a Nature paper. Ten years ago, five qubits got you a Nature paper. Now, 70 qubits might get your Nature paper, says Stace.
Thats telling you what the frontier looks like.
Those on the frontier are aiming for supremacy quantum supremacy to be exact.
Quantum supremacy is a term given to a quantum computer that could solve a problem no classical computer could solve in a reasonable time frame. Its important to note though that this problem doesnt have to be useful. Theres been a debate in quantum circles about how useful and practical these sorts of problems, or simulations, actually are to prove quantum is better.
Googles machine called the Sycamore processor has currently got 70 qubits all lined up and connected. In 2019, the researchers had claimed theyd reached quantum supremacy. More recently, they went more specific suggesting that a top-level supercomputer would take 47 years to do the calculations that Sycamore managed to do in seconds.
IBM says its 433-qubit quantum computer called Osprey could soon start having real-world applications. However, while IBM is further ahead in number of qubits, it is still struggling with the same error issues as other quantum systems.
To get to a quantum computer that could rival supercomputers at actual tasks, you need hundreds of thousands, or millions of qubits rather than a few hundred. But the more qubits you have the more errors that end up in the system.
Quantum systems are typically single atoms or single particles of light. Naturally, these are very fragile and very prone to disturbance or noise, says UNSW quantum researcher and entrepreneur Professor Andrew Dzurak.
That noise causes errors in the qubit information.
Heat also causes errors; vibration causes errors. Even just simply looking or measuring the qubit stops it altogether.
Both Dzurak and Stace stress the importance of fixing these errors. Without it, you have a very expensive, fragile machine that cant tell you anything accurately.
How to fix these errors isnt yet certain. While IBM, Google and other big companies are using superconducting qubits, smaller groups around the world are using everything from silicon to imperfections in diamond.
Dzurak has formed a start-up called Diraq which is aiming to use traditional computer chip technology to mount the qubits, allowing easier design and the ability to pack millions of qubits on one chip.
We have a mountain to climb, and you have to go through the stages to get up that mountain, he says.
The work that is being done by [IBM and Google] in collaboration, often with university groups is important research and is moving the field forward.
Entanglement is another important aspect of quantum computers which makes them infinitely harder to make work. A quirk in quantum mechanics is that particles can become intrinsically linked, despite their distance. This means that if you measure one particle you can tell information about the other, even if youre halfway across the Universe. This is entanglement, and the more and more particles you can entangle, the more powerful your quantum computer can be.
But the more particles you entangle, the more complicated the system becomes, and the more likely it will break down.
Here the history of computers seems to be repeating.
While ENIAC in Maryland was an undisputed success, it wasnt the first design of a computer, not by a long shot. The first design of a computer called the differential engine was designed by a mathematician Charles Babbage in the 1820s.
But it wouldnt be built in Babbages lifetime.
Using only the technology available, it was impossible to fine tune the metal precisely enough to build the machine. It was doomed to fail from the start.
It wasnt until an invention of something seemingly unrelated vacuum tubes or valves that ENIAC and other types of computers could begin being built in earnest.
Its a hard thing to admit, but when it comes to quantum computers, we dont yet know whether were building the ENIAC or struggling with Babbages differential engine.
It might be the case that the components that were pursuing now arent just precise enough, in the same way that the machining tools that they had in the 19th century werent precise enough to make a mechanical computer, says Stace.
So where are we at with quantum computing? Not very far at all.
It could be that were somewhere between Charles Babbage and the valve. Weve got the idea, we know in principle we can make this thing. We just dont know if we have the engineering chops to do it.
Original post:
Where are we at with quantum computing? - Cosmos
- Introducing the Quantum Universal Operations Performance System: QUOPS - Quantinuum - September 15th, 2026 [September 15th, 2026]
- Quantum-proof blockchain: why math, not machines, holds the key - CoinDesk - September 15th, 2026 [September 15th, 2026]
- IBM, Lockheed Martin Announce Swiss Quantum Innovation Hub at ETH Zurich, Anchored by Switzerlands First IBM Quantum Computer - IBM Newsroom - September 15th, 2026 [September 15th, 2026]
- Fujitsu Shares Quantum Software Toolkit With Over 80 Partners - Quantum Zeitgeist - September 15th, 2026 [September 15th, 2026]
- Roundtable: Pathfinding New Industrial Division of Labor Map, Embracing the New Future How National Strength Transforms into Industrial Value | 36Kr... - September 15th, 2026 [September 15th, 2026]
- Quandela Publishes White Paper on Photonic QPU Integration With NVIDIA Infrastructure - The Quantum Insider - September 15th, 2026 [September 15th, 2026]
- Tennessee bets big on the future of quantum tech - Oak Ridger - September 15th, 2026 [September 15th, 2026]
- QCi and Hamad Bin Khalifa University Sign Three-Year Agreement on Quantum Technology - The Quantum Insider - September 15th, 2026 [September 15th, 2026]
- BlueQubit Launches "Quantum Flywheel" Grant Program to Advance Quantum Computing with AWS, IBM, and NVIDIA Accelerated Computing - Yahoo... - September 15th, 2026 [September 15th, 2026]
- Nvidias new quantum layer cut Fermilabs design work from five months to three weeks - The Next Web - September 15th, 2026 [September 15th, 2026]
- Which Bitcoin Wallets Are at Risk From Quantum Computers? 6.9 Million BTC Have Exposed Keys - 24/7 Wall St. - September 13th, 2026 [September 13th, 2026]
- AI Just Cut the Cost of Cracking Bitcoins Encryption in Half. Is Q-Day Getting Closer? - 24/7 Wall St. - September 13th, 2026 [September 13th, 2026]
- Which Bitcoin Wallets Are at Risk From Quantum Computers? 6.9 Million BTC Have Exposed Keys - Yahoo Tech - September 13th, 2026 [September 13th, 2026]
- Switzerlands first IBM quantum computer is expected by end-2026 - Stock Titan - September 13th, 2026 [September 13th, 2026]
- Xanadu and AMD Launch Backline Platform for Quantum-Classical Integration - HPCwire - September 13th, 2026 [September 13th, 2026]
- Chalmers Researchers Make Bosonic Quantum Operations More Than 1,000 Times Faster - thequantuminsider.com - September 13th, 2026 [September 13th, 2026]
- Quantum Computer Recreates Particle Collisions That Turn Energy Into Matter - bioengineer.org - September 13th, 2026 [September 13th, 2026]
- A Quantum Physicist Told His Team 'I Think AGI Is Here.' Here's What Convinced Him - Forbes - September 11th, 2026 [September 11th, 2026]
- What Does It Take for a Quantum Computer to Actually Be Quantum? - Quantinuum - September 11th, 2026 [September 11th, 2026]
- These 3 Quantum Stocks Are on the Rise as the US Government Takes Minority Stakes - Yahoo Finance - September 11th, 2026 [September 11th, 2026]
- Switzerland Is Getting Its First Dedicated IBM Quantum Computer - Tomorrow's World Today - September 11th, 2026 [September 11th, 2026]
- Beat the odds: Master and execute Monte Carlo Integration for finance on real quantum computers - Q-CTRL - September 11th, 2026 [September 11th, 2026]
- Why organizations need to act on quantum-safe cybersecurity - The World Economic Forum - September 11th, 2026 [September 11th, 2026]
- Could a Diamond Become the Heart of a Quantum Computer? - Fujitsu Global - September 11th, 2026 [September 11th, 2026]
- IBM, Lockheed Martin team up to bring Switzerland its first 120-qubit quantum computer - Interesting Engineering - September 11th, 2026 [September 11th, 2026]
- For banks, quantum computing is both a threat to security and a chance to build resilience - The World Economic Forum - September 11th, 2026 [September 11th, 2026]
- IBM, Lockheed Martin Announce Swiss Quantum Innovation Hub at ETH Zurich, Anchored by Switzerland's First IBM Quantum Computer - PR Newswire - September 11th, 2026 [September 11th, 2026]
- Fujitsu And Yaqumo Begin Testing on Neutral-Atom Quantum Computer Hardware - The Quantum Insider - September 11th, 2026 [September 11th, 2026]
- Quantum Computing Researchers Cut Estimated Cost of Attacking Bitcoin and Ethereum Encryption in Half - northeasttimes.com - September 11th, 2026 [September 11th, 2026]
- Cleveland Clinic, RIKEN and IBM Team Advance to Finals for 2026 ACM Gordon Bell Prize - IBM Newsroom - September 11th, 2026 [September 11th, 2026]
- Researchers Cut the Estimated Quantum Cost of a Key Step in Attacking Bitcoin and Ethereum by More Than Half - unchainedcrypto.com - September 11th, 2026 [September 11th, 2026]
- BWT Alpine and SEALSQ Explore Quantum-Classical Simulation for Formula One - The Quantum Insider - September 11th, 2026 [September 11th, 2026]
- 3 Quantum Stocks to Buy If You Already Have IonQ - Yahoo Finance - September 11th, 2026 [September 11th, 2026]
- China is poised to lead in research on quantum technologies. Democracies must act - The Strategist | ASPI's analysis and commentary site - September 11th, 2026 [September 11th, 2026]
- The commercialization of quantum computers is three years away. Although it is still in the stage of.. - - September 11th, 2026 [September 11th, 2026]
- Not IonQ, Not Rigetti Computing. This Quantum Computing Stock Could Be September's Biggest Winner. - The Globe and Mail - September 11th, 2026 [September 11th, 2026]
- Semiconductor and Quantum Developments Highlighted at Industry Conferences - IndexBox - September 11th, 2026 [September 11th, 2026]
- Quobly and Absolut System Partner on Cryogenic Infrastructure for Spin-Qubit Quantum Computers - The Quantum Insider - September 11th, 2026 [September 11th, 2026]
- Washington Bought Into Quantum Computing Crypto Should Be Paying Attention - blockhead.co - September 11th, 2026 [September 11th, 2026]
- When Seconds Replace Minutes: Quantum AI and the Fragility of Deterrence - Australian Institute of International Affairs - September 11th, 2026 [September 11th, 2026]
- Quantum computing will cause mayhem. Its an opportunity for investors - The Telegraph - September 11th, 2026 [September 11th, 2026]
- NEC has quietly quit quantum computing hardware development, report claims company says it will continue to evaluate practical applications and... - September 8th, 2026 [September 8th, 2026]
- U.S. Gets Minority Stakes in Some Quantum Computing Companies in $300 Million CHIPS Act Funding Deal - wsj.com - September 8th, 2026 [September 8th, 2026]
- Why quantum computing stocks are soaring today while the rest of the market falls - fastcompany.com - September 8th, 2026 [September 8th, 2026]
- 3 Top Quantum Computing Stocks to Buy in September - Yahoo Finance - September 8th, 2026 [September 8th, 2026]
- We Just Published the First Full-Stack Blueprint for Breaking 256-Bit Elliptic-Curve Signatures Heres What That Means - IonQ - September 8th, 2026 [September 8th, 2026]
- Ethereum Foundation Gives Itself Until 2029 to Guard Against Quantum Attacks - Northeast Times - September 8th, 2026 [September 8th, 2026]
- PsiQuantum Finalizes $100 Million Award with the U.S. Department of Commerce - The Quantum Insider - September 8th, 2026 [September 8th, 2026]
- Quantum Computing Stocks: IonQ Hosts Investor Day With SkyWater Deal In Focus - Investor's Business Daily - September 8th, 2026 [September 8th, 2026]
- Fujitsu Prototypes Diamond Quantum Computer Expandable via Optical Interconnects, Targeting 1,000 Logical Qubits by FY2035 - finance.biggo.com - September 8th, 2026 [September 8th, 2026]
- D-Wave Quantum Secures Up To $100 Million In CHIPS And Science Act Funding - pulse2.com - September 8th, 2026 [September 8th, 2026]
- Quantinuum Finalizes $100 Million CHIPS R&D Award with U.S. Department of Commerce to Advance Trapped-Ion Quantum Computer Manufacturing in the US -... - September 8th, 2026 [September 8th, 2026]
- Rigetti Signs Definitive Agreement for $100M with U.S. Government for Quantum Computing R&D - The Quantum Insider - September 8th, 2026 [September 8th, 2026]
- Biggest stock movers Tuesday: ZIM, NVS, quantum computing stocks, and more - Seeking Alpha - September 8th, 2026 [September 8th, 2026]
- The U.S. government agreed to award $100 million for quantum computing research with Rigetti - Stock Titan - September 8th, 2026 [September 8th, 2026]
- $100 million US push brings 300mm chips into the race for trapped-ion quantum hardware - Interesting Engineering - September 8th, 2026 [September 8th, 2026]
- Why Rigetti Computing Popped Today - The Motley Fool - September 8th, 2026 [September 8th, 2026]
- Is the Quantum Computing Threat to Bitcoin Overblown? These New Developments Suggest That's the Case. - The Globe and Mail - September 8th, 2026 [September 8th, 2026]
- Why D-Wave Quantum Stock Popped Today - Yahoo Finance - September 8th, 2026 [September 8th, 2026]
- IonQ and Congruity360 Partner to Enhance Quantum-Safe Protection - Business Wire - September 8th, 2026 [September 8th, 2026]
- Why Rigetti Computing Popped Today - Yahoo Finance - September 8th, 2026 [September 8th, 2026]
- The U.S.-China Quantum Race: How the State and Private Sector Are Being Mobilized for Quantum - The National Bureau of Asian Research (NBR) - September 4th, 2026 [September 4th, 2026]
- Quobly and TNO Partner on Silicon Spin Qubit Development - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- Nuclear reactor simulations advance with quantum particle transport breakthrough - Interesting Engineering - September 4th, 2026 [September 4th, 2026]
- Scientek and Classiq Partner to Accelerate Quantum Software Adoption in Taiwan - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- IBMs Nighthawk r2 Quantum Processor Targets a 25-Fold Increase in Circuit Speed - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- From MIT to IBM, expediting AI and quantum deployment - MIT News - September 4th, 2026 [September 4th, 2026]
- The Drawing on the Blackboard - The Times of Israel - September 4th, 2026 [September 4th, 2026]
- Quantum Explodes on the International Stage - afcea.org - September 4th, 2026 [September 4th, 2026]
- IonQ quantum computer Tempo goes online at KISTI in April 2027, Han River supercomputer 6 to launch this year - DongA Science - September 4th, 2026 [September 4th, 2026]
- Novo Nordisk's Foundation Is Building a Quantum Chip Factory in Copenhagen - Startup Fortune - September 4th, 2026 [September 4th, 2026]
- China Reaches 98% Efficiency With a Single Quantum Router on Origin Wukong - mediasat.info - September 4th, 2026 [September 4th, 2026]
- QC Ware and IonQ Demonstrate Hybrid Quantum Chemistry Workflow for Drug Discovery - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- Quantinuum to explore energy-industry uses for quantum tech with Saudi oil giant - BizWest - September 4th, 2026 [September 4th, 2026]
- IBM Stock Is Under Pressure. Is Its Quantum Business Reason Enough to Buy? - Barron's - September 4th, 2026 [September 4th, 2026]
- Old soup factory takes on new high-tech life as quantum computing firm gets $195M federal boost - CBC - August 29th, 2026 [August 29th, 2026]
- Quantum Computings Insiders Have Sold Nearly $863 Million More Than Theyve Bought. Should Investors Worry? - Yahoo Finance - August 29th, 2026 [August 29th, 2026]
- This Quantum Stock Is Surging 40% in Its Trading Debut. Meet Pasqal. - Barron's - August 29th, 2026 [August 29th, 2026]
- IBM Completes Acquisition of HRL Laboratories to Accelerate the Future of Quantum - IBM Newsroom - August 29th, 2026 [August 29th, 2026]
- Guest Post: Quantum Readiness Starts With the Infrastructure Were Building Today - The Quantum Insider - August 29th, 2026 [August 29th, 2026]