Particle accelerator technology could solve one of the most vexing problems in building quantum computers – Fermi National Accelerator Laboratory
Last year, researchers at Fermilab received over $3.5 million for projects that delve into the burgeoning field of quantum information science. Research funded by the grant runs the gamut, from building and modeling devices for possible use in the development of quantum computers to using ultracold atoms to look for dark matter.
For their quantum computer project, Fermilab particle physicist Adam Lyon and computer scientist Jim Kowalkowski are collaborating with researchers at Argonne National Laboratory, where theyll be running simulations on high-performance computers. Their work will help determine whether instruments called superconducting radio-frequency cavities, also used in particle accelerators, can solve one of the biggest problems facing the successful development of a quantum computer: the decoherence of qubits.
Fermilab has pioneered making superconducting cavities that can accelerate particles to an extremely high degree in a short amount of space, said Lyon, one of the lead scientists on the project. It turns out this is directly applicable to a qubit.
Researchers in the field have worked on developing successful quantum computing devices for the last several decades; so far, its been difficult. This is primarily because quantum computers have to maintain very stable conditions to keep qubits in a quantum state called superposition.
Superconducting radio-frequency cavities, such as the one seen here, are used in particle accelerators. They can also solve one of the biggest problems facing the successful development of a quantum computer: the decoherence of qubits. Photo: Reidar Hahn, Fermilab
Superposition
Classical computers use a binary system of 0s and 1s called bits to store and analyze data. Eight bits combined make one byte of data, which can be strung together to encode even more information. (There are about 31.8 million bytes in the average three-minute digital song.) In contrast, quantum computers arent constrained by a strict binary system. Rather, they operate on a system of qubits, each of which can take on a continuous range of states during computation. Just as an electron orbiting an atomic nucleus doesnt have a discrete location but rather occupies all positions in its orbit at once in an electron cloud, a qubit can be maintained in a superposition of both 0 and 1
Since there are two possible states for any given qubit, a pair doubles the amount of information that can be manipulated: 22 = 4. Use four qubits, and that amount of information grows to 24 = 16. With this exponential increase, it would take only 300 entangled qubits to encode more information than there is matter in the universe.
Qubits can be in a superposition of 0 and 1, while classical bits can be only one or the other. Image: Jerald Pinson
Parallel positions
Qubits dont represent data in the same way as bits. Because qubits in superposition are both 0 and 1 at the same time, they can similarly represent all possible answers to a given problem simultaneously. This is called quantum parallelism, and its one of the properties that makes quantum computers so much faster than classical systems.
The difference between classical computers and their quantum counterparts could be compared to a situation in which there is a book with some pages randomly printed in blue ink instead of black. The two computers are given the task of determining how many pages were printed in each color.
A classical computer would go through every page, Lyon said. Each page would be marked, one at a time, as either being printed in black or in blue. A quantum computer, instead of going through the pages sequentially, would go through them all at once.
Once the computation was complete, a classical computer would give you a definite, discrete answer. If the book had three pages printed in blue, thats the answer youd get.
But a quantum computer is inherently probabilistic, Kowalkowski said.
This means the data you get back isnt definite. In a book with 100 pages, the data from a quantum computer wouldnt be just three. It also could give you, for example, a 1 percent chance of having three blue pages or a 1 percent chance of 50 blue pages.
An obvious problem arises when trying to interpret this data. A quantum computer can perform incredibly fast calculations using parallel qubits, but it spits out only probabilities, which, of course, isnt very helpful unless, that is, the right answer could somehow be given a higher probability.
Interference
Consider two water waves that approach each other. As they meet, they may constructively interfere, producing one wave with a higher crest. Or they may destructively interfere, canceling each other so that theres no longer any wave to speak of. Qubit states can also act as waves, exhibiting the same patterns of interference, a property researchers can exploit to identify the most likely answer to the problem theyre given.
If you can set up interference between the right answers and the wrong answers, you can increase the likelihood that the right answers pop up more than the wrong answers, Lyon said. Youre trying to find a quantum way to make the correct answers constructively interfere and the wrong answers destructively interfere.
When a calculation is run on a quantum computer, the same calculation is run multiple times, and the qubits are allowed to interfere with one another. The result is a distribution curve in which the correct answer is the most frequent response.
When waves meet, they may constructively interfere, producing one wave with a higher crest. Image: Jerald Pinson
Waves may also destructively interfere, canceling each other so that theres no longer any wave to speak of. Image: Jerald Pinson
Listening for signals above the noise
In the last five years, researchers at universities, government facilities and large companies have made encouraging advancements toward the development of a useful quantum computer. Last year, Google announced that it had performed calculations on their quantum processor called Sycamore in a fraction of the time it would have taken the worlds largest supercomputer to complete the same task.
Yet the quantum devices that we have today are still prototypes, akin to the first large vacuum tube computers of the 1940s.
The machines we have now dont scale up much at all, Lyon said.
Theres still a few hurdles researchers have to overcome before quantum computers become viable and competitive. One of the largest is finding a way to keep delicate qubit states isolated long enough for them to perform calculations.
If a stray photon a particle of light from outside the system were to interact with a qubit, its wave would interfere with the qubits superposition, essentially turning the calculations into a jumbled mess a process called decoherence. While the refrigerators do a moderately good job at keeping unwanted interactions to a minimum, they can do so only for a fraction of a second.
Quantum systems like to be isolated, Lyon said, and theres just no easy way to do that.
When a quantum computer is operating, it needs to be placed in a large refrigerator, like the one pictured here, to cool the device to less than a degree above absolute zero. This is done to keep energy from the surrounding environment from entering the machine. Photo: Reidar Hahn, Fermilab
Which is where Lyon and Kowalkowskis simulation work comes in. If the qubits cant be kept cold enough to maintain an entangled superposition of states, perhaps the devices themselves can be constructed in a way that makes them less susceptible to noise.
It turns out that superconducting cavities made of niobium, normally used to propel particle beams in accelerators, could be the solution. These cavities need to be constructed very precisely and operate at very low temperatures to efficiently propagate the radio waves that accelerate particle beams. Researchers theorize that by placing quantum processors in these cavities, the qubits will be able to interact undisturbed for seconds rather than the current record of milliseconds, giving them enough time to perform complex calculations.
Qubits come in several different varieties. They can be created by trapping ions within a magnetic field or by using nitrogen atoms surrounded by the carbon lattice formed naturally in crystals. The research at Fermilab and Argonne will be focused on qubits made from photons.
Lyon and his team have taken on the job of simulating how well radio-frequency cavities are expected to perform. By carrying out their simulations on high-performance computers, known as HPCs, at Argonne National Laboratory, they can predict how long photon qubits can interact in this ultralow-noise environment and account for any unexpected interactions.
Researchers around the world have used open-source software for desktop computers to simulate different applications of quantum mechanics, providing developers with blueprints for how to incorporate the results into technology. The scope of these programs, however, is limited by the amount of memory available on personal computers. In order to simulate the exponential scaling of multiple qubits, researchers have to use HPCs.
Going from one desktop to an HPC, you might be 10,000 times faster, said Matthew Otten, a fellow at Argonne National Laboratory and collaborator on the project.
Once the team has completed their simulations, the results will be used by Fermilab researchers to help improve and test the cavities for acting as computational devices.
If we set up a simulation framework, we can ask very targeted questions on the best way to store quantum information and the best way to manipulate it, said Eric Holland, the deputy head of quantum technology at Fermilab. We can use that to guide what we develop for quantum technologies.
This work is supported by the Department of Energy Office of Science.
- Turkey Launches First 5-Qubit Quantum Computer, Called QuanT, Marking National Technology Breakthrough for the Country - Quantum Computing Report - November 23rd, 2024 [November 23rd, 2024]
- Toshiba and RIKEN Achieve 99.90% Fidelity with Double-Transmon Coupler for Superconducting Quantum Computers - Quantum Computing Report - November 23rd, 2024 [November 23rd, 2024]
- IBM and Pasqal to Advance Quantum-Centric Supercomputing with a Unified Framework - Quantum Computing Report - November 23rd, 2024 [November 23rd, 2024]
- Up 43% Today, This Quantum Computing Stock Has More Than Tripled In November - Barchart - November 21st, 2024 [November 21st, 2024]
- Quantum computing making leap from theoretical to practical - Hamburg Invest - November 21st, 2024 [November 21st, 2024]
- Google Unveils AlphaQubit: AI-Driven Breakthrough in Quantum Error Correction - Quantum Computing Report - November 21st, 2024 [November 21st, 2024]
- Lightsynq Comes Out of Stealth with $18 Million in Series A Funding to Scale Quantum Computing - The Quantum Insider - November 21st, 2024 [November 21st, 2024]
- How Clean Does a Quantum Computing Test Facility Need to Be? - HPCwire - November 21st, 2024 [November 21st, 2024]
- Alice & Bob Launch Dynamiqs: A GPU-Accelerated Library for High-Speed Quantum Simulations - Quantum Computing Report - November 21st, 2024 [November 21st, 2024]
- Microsoft and Atom Computing Are Taking Orders for a Fault Tolerant Quantum Computer with 1K (Physical) / 50 (Logical) Qubits for Delivery Next Year -... - November 21st, 2024 [November 21st, 2024]
- Nurturing The Emerging Ecosystem Of Industry-Academia Collaboration In Quantum Computing - NDTV Profit - November 21st, 2024 [November 21st, 2024]
- Microsoft and Atom Computing leap ahead on the quantum frontier with logical qubits - GeekWire - November 21st, 2024 [November 21st, 2024]
- Quantum Computing and the Evolving Cyber Threat Landscape - The Soufan Center - November 16th, 2024 [November 16th, 2024]
- What is quantum computing and how might it impact financial services? - Lloyds Banking Group - November 16th, 2024 [November 16th, 2024]
- Quantum Computing to sell 16M shares at $2.50 in registered direct offering - TipRanks - November 16th, 2024 [November 16th, 2024]
- How 'clean' does a quantum computing test facility need to be? - Phys.org - November 14th, 2024 [November 14th, 2024]
- Quantum Computing Shares Are Up By More Than 70%: Here's What You Need To Know - Benzinga - November 14th, 2024 [November 14th, 2024]
- In step forward for quantum computing hardware, IU physicist uncovers novel behavior in quantum-driven superconductors - IU Newsroom - November 14th, 2024 [November 14th, 2024]
- Closing in on quantum computing with error mitigation - ComputerWeekly.com - November 14th, 2024 [November 14th, 2024]
- IQM unveils roadmap focused on fault-tolerant quantum computing by 2030 - Scientific Computing World - November 14th, 2024 [November 14th, 2024]
- Quantum Computing is Coming - Is the Insurance Industry Ready? - - Insurance Edge - November 14th, 2024 [November 14th, 2024]
- Could Diamonds Unlock Improved Qubits for Quantum Computing? - Securities.io - November 14th, 2024 [November 14th, 2024]
- Enterprise Quantum Computing Market on Track for 29.7% CAGR | Key Growth Drivers and Future Opportunities - openPR - November 14th, 2024 [November 14th, 2024]
- Equal1s Quantum Computing Breakthough with Arm Technology - Arm Newsroom - November 14th, 2024 [November 14th, 2024]
- Quantum Algorithms Institute Partners with AbaQus and InvestDEFY to Enhance Financial Forecasting with Quantum Computing - Quantum Computing Report - November 14th, 2024 [November 14th, 2024]
- SemiQon and SDT Partner to Scale Quantum Computing with Silicon-Based QPUs - Quantum Computing Report - November 14th, 2024 [November 14th, 2024]
- The CIO's quantum leap into the cloud: Integrating quantum computing into cloud infrastructure - ITPro - November 14th, 2024 [November 14th, 2024]
- Massachusetts Invests $5 Million in New Quantum Computing Facility in Holyoke - This Week In Worcester - November 14th, 2024 [November 14th, 2024]
- Hamad Bin Khalifa University and Quantinuum Partner to Advance Quantum Computing in Qatar - The Quantum Insider - November 14th, 2024 [November 14th, 2024]
- Hamad Bin Khalifa University Partners with Quantinuum to Boost Quantum Computing Research in Qatar - Quantum Computing Report - November 14th, 2024 [November 14th, 2024]
- Singtel Expands Quantum-Safe Network with Palo Alto Networks and Fortinet Integration - Quantum Computing Report - November 14th, 2024 [November 14th, 2024]
- Quantum Computing Company to Part With General Counsel - Law.com - November 12th, 2024 [November 12th, 2024]
- Researchers from the University of Sydney demonstrate more effieicnt quantum error correction - Scientific Computing World - November 12th, 2024 [November 12th, 2024]
- Quantum computing will be the next big tech trend to have a major impact on marketing, says Citi CMO Alex Craddock - Business Insider - November 10th, 2024 [November 10th, 2024]
- A Look At The Official Opening of UKs National Quantum Computing Centre - The Quantum Insider - November 10th, 2024 [November 10th, 2024]
- IonQ Partners with imec to Advance Quantum Computing with Photonic Integrated Circuits and Chip-Scale Ion Traps - Quantum Computing Report - November 10th, 2024 [November 10th, 2024]
- BTQ Technologies and Macquarie University Partner to Drive Quantum Computing and Secure Communications - Quantum Computing Report - November 10th, 2024 [November 10th, 2024]
- IonQ to Acquire the Assets of Qubitekk to Strengthen Its Position in Quantum Networking Technology - Quantum Computing Report - November 10th, 2024 [November 10th, 2024]
- From nuclear to quantum computing, how Big Tech intends to power AI's insatiable thirst for energy - CNBC - November 10th, 2024 [November 10th, 2024]
- Quantum Computing and Critical Infrastructure - The Quantum Insider - October 16th, 2024 [October 16th, 2024]
- A Superconducting Waltz: Elia Strambini on the Quantum Future of Computing - The Quantum Insider - October 16th, 2024 [October 16th, 2024]
- Quantum computing and photonics discovery potentially shrinks critical parts by 1,000 times - Phys.org - October 16th, 2024 [October 16th, 2024]
- Nu Quantum Announces the Qubit-Photon Interface for Modular and Scalable Distributed Quantum Computing - The Quantum Insider - October 16th, 2024 [October 16th, 2024]
- How to Invest in Quantum Computing Companies (Updated 2024) - Investing News Network - October 16th, 2024 [October 16th, 2024]
- IBM pitches camp in Germany to prepare Quantum Computing for the real world - diginomica - October 16th, 2024 [October 16th, 2024]
- Purifications, Fidelity & the Future of Computing - The Quantum Insider - October 16th, 2024 [October 16th, 2024]
- Making quantum computing more accessible and applicable to real-world challenges - Scientific Computing World - October 16th, 2024 [October 16th, 2024]
- The future of quantum computing and cybersecurity in telecommunications - Telefnica - October 16th, 2024 [October 16th, 2024]
- Chinese Quantum Computing Threat Highlights Urgency for Quantum eMotion's Quantum Security Solutions - Newsfile - October 16th, 2024 [October 16th, 2024]
- Qunova Computing Achieves Chemical Accuracy in Quantum Chemistry Simulations with Innovative Hardware-Agnostic Algorithm on NISQ Devices - Quantum... - October 16th, 2024 [October 16th, 2024]
- Quantum Computing Transformed by Breakthrough Photonic Technology - SciTechDaily - October 12th, 2024 [October 12th, 2024]
- How Is Quantum Computing Being Used in Healthcare? - HealthTech Magazine - October 12th, 2024 [October 12th, 2024]
- IBM Quantum Roadmap Guide -- Scaling And Expanding The Usefulness of Quantum Computing - The Quantum Insider - October 12th, 2024 [October 12th, 2024]
- Toyota and Xanadu Partner to Bring Quantum Computing to Advanced Materials Science and Sensing Applications - The Quantum Insider - October 12th, 2024 [October 12th, 2024]
- 'Invisibility' and quantum computing tipped for physics Nobel - Yahoo! Voices - October 12th, 2024 [October 12th, 2024]
- Airbus Selects Multiverse Computing to Build Quantum-inspired Gesture Recognition Software For Fighter Pilots - The Quantum Insider - October 12th, 2024 [October 12th, 2024]
- From Legacy to Innovation: Banks' Path to Cloud, AI, and Quantum Computing - Finextra - October 12th, 2024 [October 12th, 2024]
- IBM Executive Stories: Bringing Useful Quantum Computing to the World - IBM - October 7th, 2024 [October 7th, 2024]
- Quantum Computing Market to Soar to $7.1B by 2031 with 30.7% CAGR - openPR - October 7th, 2024 [October 7th, 2024]
- Quantum Computing Market Is Going to Boom | Major Giants IBM, Google, Rigetti, Microsoft, Intel - openPR - October 7th, 2024 [October 7th, 2024]
- Will IBM's Focus on Quantum Computing Propel the Stock? - Yahoo Finance - October 7th, 2024 [October 7th, 2024]
- Nu Quantums Platform For Networking Quantum Computers Hosted at The UK's National Quantum Computing Centre - The Quantum Insider - October 7th, 2024 [October 7th, 2024]
- Quantum Computing for Real-world Applications with Professor Naoki Yamamoto of Keio University - The Quantum Insider - October 7th, 2024 [October 7th, 2024]
- University of Queensland (UQ) is Receiving $29 million AUD ($19.7M USD) in Funding for Quantum Research and Scholarships - Quantum Computing Report - October 7th, 2024 [October 7th, 2024]
- History of quantum computing: 12 key moments that shaped the future of computers - Livescience.com - October 3rd, 2024 [October 3rd, 2024]
- Quantum Sensors: Atom Interferometry. Part 3: Space is the Place - Quantum Computing Report - October 3rd, 2024 [October 3rd, 2024]
- D-Wave and Japan Tobacco Collaborate on a Quantum AI-Driven Drug Discovery Proof-of-Concept - Quantum Computing Report - October 3rd, 2024 [October 3rd, 2024]
- March-Ins on Quantum Computing is the Newest of Threats to Free Enterprise - ShortGo - October 3rd, 2024 [October 3rd, 2024]
- Quantum computing and the future of cryptography: Understanding the imminent threat - Backend News - October 3rd, 2024 [October 3rd, 2024]
- Quantum for AI: Weather Forecasting. Are we There Yet? - Quantum Computing Report - September 28th, 2024 [September 28th, 2024]
- US Implements Controls on Quantum Computing and other Technologies - HPCwire - September 28th, 2024 [September 28th, 2024]
- IBM opens its quantum-computing stack to third parties - Ars Technica - September 28th, 2024 [September 28th, 2024]
- G7 cyber group warns financial sector to prep for quantum computing risks - The Record from Recorded Future News - September 28th, 2024 [September 28th, 2024]
- IonQ Signs a $54.5 Million Contract with AFRL for Research in Both Quantum Computing and Quantum Networking - Quantum Computing Report - September 28th, 2024 [September 28th, 2024]
- Quantum computing what you need to know - Information Age - September 28th, 2024 [September 28th, 2024]
- AI and Quantum Computing Form Strong Bond to Power Materials Discovery Innovation -- SandboxAQ, EY Researchers Report - The Quantum Insider - September 28th, 2024 [September 28th, 2024]
- University of Iowa Technology Institute researcher secures nearly $1 million grant to advance quantum computing - Corridor Business - September 28th, 2024 [September 28th, 2024]
- Quantum Computing vs. Blockchain: Will It Break the System? - CCN.com - September 28th, 2024 [September 28th, 2024]
- The Pervasiveness of Machine Learning in Quantum Technology - Quantum Computing Report - September 28th, 2024 [September 28th, 2024]
- BlueQubit Launches Plugin for Pennylane to Enable Quantum Simulations on BlueQubits Platform - Quantum Computing Report - September 28th, 2024 [September 28th, 2024]