PsiQuantum Has A Goal For Its Million Qubit Photonic Quantum Computer To Outperform Every Supercomputer On The Planet – Forbes
PsiQuantum
In 2009, Jeremy O'Brien, a professor at the University of Bristol, published a research paper describing how to repurpose on-chip optical components originally developed by the telecom industry to manipulate single particles of light and perform quantum operations.
By 2016, based on the earlier photonic research, OBrien and three of his academic colleagues, Terry Rudolph, Mark Thompson, and Pete Shadbolt, created PsiQuantum.
The founders all believed that the traditional method of building a quantum computer of a useful size would take too long. At the companys inception, the PsiQuantum team established its goal to build a million qubit, fault-tolerant photonic quantum computer. They also believed the only way to create such a machine was to manufacture it in a semiconductor foundry.
Early alerts
PsiQuantum first popped up on my quantum radar about two years ago when it received $150 million in Series C funding which upped total investments in the company to $215 million.
That level of funding meant there was serious interest in the potential of whatever quantum device PsiQuantum was building. At that time, PsiQuantum was operating in a stealth mode, so there was little information available about its research.
Finally, after receiving another $450 million in Series D funding last year, PsiQuantum disclosed additional information about its technology. As recently as few weeks ago, a small $25 million US government grant was awarded jointly to PsiQuantum and its fabrication partner, GlobalFoundries, for tooling and further development of its photonic quantum computer. Having GlobalFoundries as a partner was a definite quality signal. GF is a high-quality, premiere fab and only one of the three tier one foundries worldwide.
With a current valuation of $3.15 Billion, PsiQuantum is following a quantum roadmap mainly paved with stepping stones of its own design with unique technology, components, and processes needed to build a million-qubit general-purpose silicon photonic quantum computer.
Technology
Classical computers encode information using digital bits to represent a zero or a one. Quantum computers use quantum bits (qubits), which can also represent a one or a zero, or be in a quantum superposition of some number between zero and one at the same time. There are a variety of qubit technologies. IBM, Google, and Rigetti use qubits made with small loops of wire that become superconductors when subjected to very cold temperatures. Quantinuum and IonQ use qubits formed by removing an outer valence electron from an atom of Ytterbium to create an ion. Atom Computing makes neutral atom spin qubits using an isotope of Strontium.
Light is used for various operations in superconductors and atomic quantum computers. PsiQuantum also uses light and turns infinitesimally small photons of light into qubits. Of the two types of photonic qubits - squeezed light and single photons - PsiQuantums technology of choice is single-photon qubits.
Using photons as qubits is a complex process. It is complicated to determine the quantum state of a single photon among trillions of photons with a range of varied frequencies and energies.
Dr. Pete Shadbolt is the Co-founder and Chief Science Officer of PsiQuantum. His responsibilities include overseeing the application and implementation of technology and scientific-related policies and procedures that are vital to the success of PsiQuantum. After earning his PhD in experimental photonic quantum computing from the University of Bristol in 2014, he was a postdoc at Imperial College researching the theory of photonic quantum computing. While at Bristol, he demonstrated the first-ever Variational Quantum Eigensolver and the first-ever public API to a quantum processor. He has been awarded the 2014 EPSRC "Rising Star" by the British Research Council; the EPSRC Recognizing Inspirational Scientists and Engineers Award; and the European Physics Society Thesis Prize.
Dr. Shadbolt explained that detecting a single photon from a light beam is analogous to collecting a single specified drop of water from the Amazon river's volume at its widest point.
That process is occurring on a chip the size of a quarter, Dr. Shadbolt said. Extraordinary engineering and physics are happening inside PsiQuantum chips. We are constantly improving the chips fidelity and single photon source performance.
Just any photon isnt good enough. There are stringent requirements for photons used as qubits. Consistency and fidelity are critical to the performance of photonic quantum computers. Therefore, each photon source must have high purity, proper brightness, and generate consistently identical photons.
The right partner
GlobalFoundries facility in Essex, Vermont
When PsiQuantum announced its Series D funding a year ago, the company revealed it had formed a previously undisclosed partnership with GlobalFoundries. Out of public view, the partnership had been able to build a first-of-its-kind manufacturing process for photonic quantum chips. This manufacturing process produces 300-millimeter wafers containing thousands of single photon sources, and a corresponding number of single photon detectors. The wafer also contains interferometers, splitters, and phase shifters. In order to control the photonic chip, advanced electronic CMOS control chips with around 750 million transistors were also built at the GlobalFoundries facility in Dresden, Germany.
Photon advantages
Every quantum qubit technology has its own set of advantages and disadvantages. PsiQuantum chose to use photons to build its quantum computer for several reasons:
Another major advantage of photon qubits worth highlighting is the ability to maintain quantum states for a relatively long time. As an example of lights coherence, despite traveling for billions of years, light emitted by distant stars and galaxies reaches earth with its original polarization intact. The longer a qubit can maintain its polarized quantum state, the more quantum operations it can perform, which makes the quantum computer more powerful.
Why start with a million qubits?
We believed we had cracked the code for building a million-qubit quantum computer, Dr. Shadbolt said. Even though that's a huge number, the secret seemed simple. All we had to do was use the same process as the one being used to put billions of transistors into cell phones. We felt a large quantum computer wouldnt exist in our lifetime unless we figured out how to build it in a semiconductor foundry. That idea has been turned into reality. We are now building quantum chips next to laptops and cell phone chips on the GlobalFoundries 300-millimeter platform.
According to Dr. Shadbolt, PsiQuantums custom fabrication line has made much progress. Surprisingly, building a million-qubit quantum machine in a foundry has many of the same non-quantum issues as assembling a classical supercomputer, including chip yields, reliability, high-throughput testing, packaging, and cooling albeit to cryogenic temperatures.
From the time that our first GlobalFoundries announcement was made until now, we've produced huge amounts of silicon, Dr. Shadbolt said. Weve done seven tapeouts in total and were now seeing hundreds and hundreds of wafers of silicon coming through our door. We are investing heavily in packaging, assembly systems, integration, and fiber attachment to ensure the highest efficiency of light flowing in and out of the chip.
PsiQuantum is performing a great deal of ongoing research as well as continually improving the performance of photonic components and processes. In addition to high-performance optical components, the technologies that enable the process are also very important. A few enablers include optical switches, fiber-to-chip interconnects, and bonding methods.
We have greatly improved the efficiency of our photon detectors over the last few tapeouts at GlobalFoundries, Dr. Shadbolt explained. Were constantly working to prevent fewer and fewer photons from being lost from the system. We also have driven waveguide losses to extremely low levels in our recent chips.
There is much innovation involved. Our light source for single photons is a good example. We shine laser light directly into the chip to run the single photon sources. The laser is about a trillion times more intense than the single photons we need to detect, so we must attenuate light on that chip by a factor of about a trillion.
Dr. Shadbolt attributes PsiQuantums manufacturing success to GlobalFoundries. From experience, he knows there is a significant difference between a second-tier foundry and a first-tier foundry like GlobalFoundries. Building chips needed by PsiQuantum can only be built with an extremely mature manufacturing process.
PsiQuantum has two demanding requirements. We need a huge number of components, and we need those components to consistently meet extremely demanding performance requirements. There are very few partners in the world who can reliably achieve something like this, and we always knew that partnering with a mature manufacturer like GlobalFoundries would be key to our strategy.
The partnership has also been beneficial for GlobalFoundries because it has gained additional experience with new technologies by adding PsiQuantums photonic processes to the foundry.
The end is in sight
According to Dr. Shadbolt, the original question of whether large numbers of quantum devices could be built in a foundry is no longer an issue as routinely demonstrated by its output of silicon. However, inserting new devices into the manufacturing flow has always been difficult. It is slow and it is very expensive. Nanowire single photon detectors are an example of a development that came directly from the university lab and was inserted into the manufacturing process.
PsiQuantums semiconductor roadmap only has a few remaining items to complete. Since a million qubits wont fit on a single chip, the quantum computer will require multiple quantum processor chips to be interconnected with optical fibers and facilitated by ultra-high-performance optical switches to allow teleportation and entanglement of single photon operations between chips.
What remains is the optical switch, Dr. Shadbolt said. You might ask why photonic quantum computing people have never built anything at scale? Or why they havent demonstrated very large entangled states? The reason is that a special optical switch is needed, but none exists. It must have very high performance, better than any existing state-of-the-art optical switch such as those used for telecom networking. Its a classical device, and its only function will be to route light between waveguides, but it must be done with extremely low loss and at very high speed. It must be a really, really good optical switch.
If it cant be bought, then it must be built
Implementing an optical switch with the right specs is a success-or-fail item for PsiQuantum. Since a commercial optical switch doesnt exist that fits the application needs, PsiQuantum was left with no choice but to build one. For the past few years, its management has been heavily investing in developing a very high-performance optical switch.
Dr. Shadbolt explained: I believe this is one of the most exciting things PsiQuantum is doing. Building an extremely high-performance optical switch is the next biggest thing on our roadmap. We believe it is the key to unlocking the huge promise of optical quantum computing.
Summary
PsiQuantum was founded on the belief that photonics was the right technology for building a fault tolerant quantum machine with a million qubits and that the proper approach was based on semiconductor manufacturing. In contrast to NISQ quantum computers, the founders wanted to avoid building incrementally larger and larger machines over time.
Considering the overall process needed to build a million-qubit quantum computer, its high degree of complexity, and the lack of proven tools and processes to do it with, PsiQuantum has made amazing progress since it first formed the company.
It established a true partnership with one of the best foundries in the world and produced seven tapeouts and funded a half dozen new tools to build a first-of-its-kind wafer manufacturing process, incorporating superconducting single photon detectors into a regular silicon-photonic chip.
And today, it is answering yet another challenge by building an optical switch to fill a void where the needed product doesnt exist.
It is no surprise that an ultra- high-performance optical switch is a key part of PsiQuantums plans to build a scalable million qubit quantum computer. Other quantum companies are also planning to integrate similar optical switching technology to scale modular QPU architectures within the decade. The high-performance optical switch PsiQuantum is developing could someday connect tens of thousands of quantum processing units in a future multi-million qubit quantum data center. As a standalone product, it could also be a source of additional revenue should PsiQuantum choose to market it.
Once the optical switch has been built, it will then need to be enabled into GlobalFoundries manufacturing flow. That is the last step needed to complete PsiQuantums foundry assembly process and then it will be ready to produce photonic quantum computer chips.
But even with a complete end-to-end manufacturing process, significantly more time will be needed to construct a full-blown fault-tolerant quantum computer. It will remain for PsiQuantum to build complete quantum computers around chips produced by GlobalFoundries. For that, it will need a trained workforce and a location and infrastructure where large qubit photonic quantum computers can be assembled, integrated, tested, and distributed.
Based on the amount of post-foundry work, development of the optical switch, and assembly that remains, and assuming no major technology problems or delays occur, I believe it will be after mid-decade before a photonic quantum computer of any scale can be offered by PsiQuantum.
Ill wrap this up with comments made by Dr. Shadbolt during our discussion about the optical switch. I believe it demonstrates why PsiQuantum has been, and will continue to be successful:
Even though the optical switch will obviously be a very powerful generic technology of interest to others, we are not interested in its generic usefulness. We are only interested in the fact that it will allow us to build a quantum computer that outperforms every supercomputer on the planet. That is our singular goal.
Paul Smith-Goodson is Vice President and Principal Analyst for quantum computing, artificial intelligence and space at Moor Insights and Strategy. You can follow him on Twitter for more current information on quantum, AI, and space.
Note: Moor Insights & Strategy writers and editors may have contributed to this article.
Moor Insights & Strategy, like all research and tech industry analyst firms, provides or has provided paid services to technology companies. These services include research, analysis, advising, consulting, benchmarking, acquisition matchmaking, and speaking sponsorships. The company has had or currently has paid business relationships with 88, Accenture, A10 Networks, Advanced Micro Devices, Amazon, Amazon Web Services, Ambient Scientific, Anuta Networks, Applied Brain Research, Applied Micro, Apstra, Arm, Aruba Networks (now HPE), Atom Computing, AT&T, Aura, Automation Anywhere, AWS, A-10 Strategies, Bitfusion, Blaize, Box, Broadcom, C3.AI, Calix, Campfire, Cisco Systems, Clear Software, Cloudera, Clumio, Cognitive Systems, CompuCom, Cradlepoint, CyberArk, Dell, Dell EMC, Dell Technologies, Diablo Technologies, Dialogue Group, Digital Optics, Dreamium Labs, D-Wave, Echelon, Ericsson, Extreme Networks, Five9, Flex, Foundries.io, Foxconn, Frame (now VMware), Fujitsu, Gen Z Consortium, Glue Networks, GlobalFoundries, Revolve (now Google), Google Cloud, Graphcore, Groq, Hiregenics, Hotwire Global, HP Inc., Hewlett Packard Enterprise, Honeywell, Huawei Technologies, IBM, Infinidat, Infosys, Inseego, IonQ, IonVR, Inseego, Infosys, Infiot, Intel, Interdigital, Jabil Circuit, Keysight, Konica Minolta, Lattice Semiconductor, Lenovo, Linux Foundation, Lightbits Labs, LogicMonitor, Luminar, MapBox, Marvell Technology, Mavenir, Marseille Inc, Mayfair Equity, Meraki (Cisco), Merck KGaA, Mesophere, Micron Technology, Microsoft, MiTEL, Mojo Networks, MongoDB, MulteFire Alliance, National Instruments, Neat, NetApp, Nightwatch, NOKIA (Alcatel-Lucent), Nortek, Novumind, NVIDIA, Nutanix, Nuvia (now Qualcomm), onsemi, ONUG, OpenStack Foundation, Oracle, Palo Alto Networks, Panasas, Peraso, Pexip, Pixelworks, Plume Design, PlusAI, Poly (formerly Plantronics), Portworx, Pure Storage, Qualcomm, Quantinuum, Rackspace, Rambus, Rayvolt E-Bikes, Red Hat, Renesas, Residio, Samsung Electronics, Samsung Semi, SAP, SAS, Scale Computing, Schneider Electric, SiFive, Silver Peak (now Aruba-HPE), SkyWorks, SONY Optical Storage, Splunk, Springpath (now Cisco), Spirent, Splunk, Sprint (now T-Mobile), Stratus Technologies, Symantec, Synaptics, Syniverse, Synopsys, Tanium, Telesign,TE Connectivity, TensTorrent, Tobii Technology, Teradata,T-Mobile, Treasure Data, Twitter, Unity Technologies, UiPath, Verizon Communications, VAST Data, Ventana Micro Systems, Vidyo, VMware, Wave Computing, Wellsmith, Xilinx, Zayo, Zebra, Zededa, Zendesk, Zoho, Zoom, and Zscaler. Moor Insights & Strategy founder, CEO, and Chief Analyst Patrick Moorhead is an investor in dMY Technology Group Inc. VI, Dreamium Labs, Groq, Luminar Technologies, MemryX, and Movandi.
Moor Insights & Strategy founder, CEO, and Chief Analyst Patrick Moorhead is an investor in dMY Technology Group Inc. VI, Dreamium Labs, Groq, Luminar Technologies, MemryX, and Movand
Here is the original post:
PsiQuantum Has A Goal For Its Million Qubit Photonic Quantum Computer To Outperform Every Supercomputer On The Planet - Forbes
- Roundtable: Quantum Computing Scenario Implementation & Emergence If Quantum Computing Power Is Available Tomorrow, Who Will Be the First... - September 15th, 2026 [September 15th, 2026]
- Quantum Computing Inc. Expands Global Quantum Adoption Through New Hamad Bin Khalifa University Framework Agreement - PR Newswire - September 15th, 2026 [September 15th, 2026]
- Keynote Speech: Breaking Boundaries Quantum Computing Advances into Deep Industrial Application Waters The Next Mile of Quantum Computing | 36Kr... - September 15th, 2026 [September 15th, 2026]
- CloudHill Capital Partner Song Xuwen: Quantum Computing Advances Engineering & Industrialization in Parallel - Inflection Point Near | 36Kr 2026... - September 15th, 2026 [September 15th, 2026]
- Why Quantum Computing Could Break the Internets Security And What Comes Next - European Business Magazine - September 15th, 2026 [September 15th, 2026]
- Quantum Computing expands global quantum adoption via accord with university in Qatar - ROI-NJ - September 15th, 2026 [September 15th, 2026]
- Phasecraft and NVIDIA expand collaboration to advance quantum computing research - New Electronics - September 15th, 2026 [September 15th, 2026]
- Quantum Dice and North Wales Police Test Probabilistic Computing for Emergency Response - The Quantum Insider - September 15th, 2026 [September 15th, 2026]
- Quantum Computing Inc. Signs Three-Year Agreement With Hamad Bin Khalifa University - Yahoo Finance - September 15th, 2026 [September 15th, 2026]
- Quantum Computing and the Rise of the Breachless Data Breach - Law.com - September 15th, 2026 [September 15th, 2026]
- If I Could Only Buy 1 Quantum Computing Stock, This Would Be It - Yahoo Finance - September 13th, 2026 [September 13th, 2026]
- BigBear.ai vs. IonQ: Weighing Whether to Invest in the Artificial Intelligence Company or the Quantum Computing Giant - The Motley Fool - September 13th, 2026 [September 13th, 2026]
- IBM and Lockheed Martin Partner with ETH Zurich to Deploy Switzerlands First IBM Quantum System Two - Quantum Computing Report - September 13th, 2026 [September 13th, 2026]
- BWT Alpine Formula One Team and SEALSQ Expand Quantum Partnership into Multiphysics Simulation - Quantum Computing Report - September 13th, 2026 [September 13th, 2026]
- If I Could Only Buy 1 Quantum Computing Stock, This Would Be It - The Motley Fool - September 13th, 2026 [September 13th, 2026]
- 3 Quantum Computing Stocks Have Issued a $63 Million Warning This Year That Wall Street Cannot Ignore - The Motley Fool - September 13th, 2026 [September 13th, 2026]
- BigBear.ai vs. IonQ: Weighing Whether to Invest in the Artificial Intelligence Company or the Quantum Computing Giant - The Globe and Mail - September 13th, 2026 [September 13th, 2026]
- Why quantum computing stocks are soaring today while the rest of the market falls - Yahoo Finance - September 13th, 2026 [September 13th, 2026]
- Is the Quantum Computing Threat to Bitcoin Overblown? These New Developments Suggest That's the Case. - The Motley Fool - September 8th, 2026 [September 8th, 2026]
- AI models using quantum computing will be tested on live currency data - Stock Titan - September 8th, 2026 [September 8th, 2026]
- The US is pouring hundreds of millions more into quantum computing. This is only the beginning - XTB.com - September 8th, 2026 [September 8th, 2026]
- Quantum Motion Raises Additional Funding for Silicon Quantum Computing - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- George Mason University Partners with TreQ to Install $7.7M Open-Architecture Quantum QPU in Virginia - Quantum Computing Report - September 4th, 2026 [September 4th, 2026]
- Rigetti and Purdue University Demonstrate Quantum Preconditioning Framework for Constrained Optimization - Quantum Computing Report - September 4th, 2026 [September 4th, 2026]
- George Mason and TreQ Bring Open-Architecture Quantum Computing to Virginia - HPCwire - September 4th, 2026 [September 4th, 2026]
- IBM Releases Nighthawk r2 QPU Featuring Active Dissipative Qubit Reset and 25x Circuit Throughput - Quantum Computing Report - September 4th, 2026 [September 4th, 2026]
- Why everyone in quantum computing is buzzing about Googles move into neutral atoms - Fast Company - September 2nd, 2026 [September 2nd, 2026]
- Bitcoin May Already be Resistant to Quantum Computing Attacks - extremetech.com - September 2nd, 2026 [September 2nd, 2026]
- Anyon Systems and KMT Technologies Partner to Expand Quantum Computing Deployment - The Quantum Insider - September 2nd, 2026 [September 2nd, 2026]
- Yaqumo and SCREEN Holdings Partner on NEDO Project to Build Optical Modules for Neutral-Atom QPUs - Quantum Computing Report - September 2nd, 2026 [September 2nd, 2026]
- NSF awards $37M to its UC Berkeley-led quantum computing research - Daily Cal - September 2nd, 2026 [September 2nd, 2026]
- Anyon Systems and Matrix Group Partner to Accelerate International Quantum Supercomputing Deployments - Quantum Computing Report - September 2nd, 2026 [September 2nd, 2026]
- Diffraqtion Caps Pre-Seed Round at $10M+ with Strategic Backing from Lockheed Martin and Presidio Ventures - Quantum Computing Report - September 2nd, 2026 [September 2nd, 2026]
- Anyon Systems and KMT Technologies Partner to Accelerate International Deployment of Quantum Computing - HPCwire - September 2nd, 2026 [September 2nd, 2026]
- A Major Quantum Computing Problem May Finally Have an Answer: Can We Trust the Results? - SciTechDaily - September 2nd, 2026 [September 2nd, 2026]
- S-Transistors Raises 2.6 Million ($3 Million USD) Pre-Seed Round to Build Superconducting Quantum Control Motherboards - Quantum Computing Report - September 2nd, 2026 [September 2nd, 2026]
- How Quantum Hardware Rollouts And NHanced Deal At Quantum Computing (QUBT) Have Changed Its Investment Story - simplywall.st - September 2nd, 2026 [September 2nd, 2026]
- Can IBM's HRL Acquisition Boost Its Quantum Computing Capabilities? - The Globe and Mail - September 2nd, 2026 [September 2nd, 2026]
- Anyon Systems And Matrix Group Team Up To Expand Quantum Computing Access - Quantum Zeitgeist - September 2nd, 2026 [September 2nd, 2026]
- Quantum Computing Use Cases for the Oil and Gas Industry - JPT Homepage - August 31st, 2026 [August 31st, 2026]
- Quantum computing: Where we stand in 2026 - Constellation Research - August 31st, 2026 [August 31st, 2026]
- Quantum Computing Inc Stock (QUBT) Opinions on Revenue Surge and Analyst Upgrade - Quiver Quantitative - August 31st, 2026 [August 31st, 2026]
- Quantum Computing (QUBT) Stock Looks Reasonable On Book Value While Returns Look Stretched - simplywall.st - August 31st, 2026 [August 31st, 2026]
- Quantum Computing (QUBT) Looks Undervalued On Paper, Is The Pullback A Buying Opportunity? - simplywall.st - August 31st, 2026 [August 31st, 2026]
- Quantum Computing Is Raising the Stakes for Cybersecurity: 5 Stocks to Watch - Yahoo Finance - August 31st, 2026 [August 31st, 2026]
- The Dream of Quantum Computing Is Both Dead and Alive - Bloomberg - August 27th, 2026 [August 27th, 2026]
- Quantum Datacenter Alliance Announces Second Annual Forum on Scaling Quantum Computing - The Quantum Insider - August 27th, 2026 [August 27th, 2026]
- Why Quantum Computing Is a Threat to Cybersecurity - WSJ - August 27th, 2026 [August 27th, 2026]
- Its time to stop sleeping on quantum computing: 48 experts on what to watch for next - Fast Company - August 27th, 2026 [August 27th, 2026]
- Bitcoin now has a quantum computing escape route, but 7 million BTC may still be exposed - CryptoSlate - August 27th, 2026 [August 27th, 2026]
- Quantum Computing Inc Stock (QBTS) Opinions on CFO Resignation - Quiver Quantitative - August 27th, 2026 [August 27th, 2026]
- Pasqal and Eleven Ventures Form Joint Venture for Quantum Computing in Saudi Arabia - The Quantum Insider - August 27th, 2026 [August 27th, 2026]
- 1 Quantum Computing Stock Everyone's Ignoring While IonQ Gets the Headlines - The Motley Fool - August 27th, 2026 [August 27th, 2026]
- Quantum Stocks Unwind a Revenue-Headline Rally: Rigetti Computing and Infleqtion Down 7%, IonQ Down 6% - 24/7 Wall St. - August 27th, 2026 [August 27th, 2026]
- Quantum Datacenter Alliance Announces 2nd Annual Forum on Scaling Quantum Computing - HPCwire - August 27th, 2026 [August 27th, 2026]
- IonQ vs. Quantum Computing Inc.: Which Quantum Computing Stock Is a Better Buy in 2026? - The Motley Fool - August 27th, 2026 [August 27th, 2026]
- Quantum Computing Stocks IonQ, Rigetti Computing, and D-Wave Quantum Have Put Wall Street on Notice With This $863 Million Warning - The Motley Fool - August 27th, 2026 [August 27th, 2026]
- IonQ Expands Cloud Quantum Computing Access Through Canadian FABrIC Sandbox - The Fast Mode - August 23rd, 2026 [August 23rd, 2026]
- IonQ (NYSE: IONQ) Emerges As The Standout Pure-Play Quantum Computing Stock To Watch - foreignpolicyjournal.com - August 23rd, 2026 [August 23rd, 2026]
- The Quantum Computing Race Is Heating Up: The Top 3 Stocks to Buy Right Now - Yahoo Finance - August 23rd, 2026 [August 23rd, 2026]
- Reddit vs. Rigetti Computing: Which High-Growth Stock Is a Better Buy in 2026, the Social Media Giant or Rising Quantum Computing Company? - Yahoo... - August 23rd, 2026 [August 23rd, 2026]
- 1 Quantum Computing Stock That Looks Like a Screaming Buy Right Now - The Motley Fool - August 23rd, 2026 [August 23rd, 2026]
- Quantum Computing vs. Red Cat: Which High-Growth Innovation Stock Is a Better Buy in 2026? - The Motley Fool - August 23rd, 2026 [August 23rd, 2026]
- Quantum Computing Finally Delivered, And The Stock May Be Too Cheap (NASDAQ:QUBT) - Seeking Alpha - August 23rd, 2026 [August 23rd, 2026]
- Quantum Computing Stock Jumps 9.6% as Cash Covers 64% of Its Market Value - TechStock - August 23rd, 2026 [August 23rd, 2026]
- D-Wave Quantum vs. Microsoft: Which Is the Better Quantum Computing Stock to Own for the Next 5 Years? - Yahoo Finance - August 23rd, 2026 [August 23rd, 2026]
- A little bit more than magic: The secret to quantum computing may lie in negativity - Phys.org - August 22nd, 2026 [August 22nd, 2026]
- IBM's new 'quantum fridges' are nearly 200 times colder than deep space and could pave the way for fault-tolerant quantum computing - Live Science - August 22nd, 2026 [August 22nd, 2026]
- 3 Quantum Computing Stocks With the Most Upside in August - Yahoo Finance - August 22nd, 2026 [August 22nd, 2026]
- Can IBM Scale Quantum Computing With Its New Cryogenic Systems? - Yahoo Finance - August 22nd, 2026 [August 22nd, 2026]
- EBU and Superpositions Partner to Add Quantum Computing to Business Education - The Quantum Insider - August 22nd, 2026 [August 22nd, 2026]
- IonQ and CMC Microsystems Announce Collaboration to Expand Cloud Quantum Computing Access in Canada - The Quantum Insider - August 22nd, 2026 [August 22nd, 2026]
- New quantum computing facility in South Chicago expected to have economic impact in Illinois - CBS News - August 22nd, 2026 [August 22nd, 2026]
- D-Wave Quantum vs. Microsoft: Which Is the Better Quantum Computing Stock to Own for the Next 5 Years? - The Motley Fool - August 22nd, 2026 [August 22nd, 2026]
- 3 Quantum Computing Stocks With the Most Upside in August - 24/7 Wall St. - August 22nd, 2026 [August 22nd, 2026]
- Quantinuum: Trapped-Ion Quantum Computing Looks To Break Out Of The Quantum Silo - Seeking Alpha - August 22nd, 2026 [August 22nd, 2026]
- FormationQ and Hartree Centre Partner to Advance Quantum Computing in the UK - The Quantum Insider - August 22nd, 2026 [August 22nd, 2026]
- IonQ and CMC Microsystems Announce Collaboration to Expand Cloud Quantum Computing Access in Canada - IonQ - August 18th, 2026 [August 18th, 2026]
- Quantum Computing Inc Stock Short Interest Falls to 32.11% - Quiver Quantitative - August 18th, 2026 [August 18th, 2026]
- The Quantum Opportunity Beyond Computing - Lockheed Martin - August 18th, 2026 [August 18th, 2026]