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D-Wave Quantum News Stock Rises 1300% in 12 Months

D-Wave Quantum News
Zacks analyst blog highlights Rigetti, IBM, IonQ, and D-wave quantum computing.
Investors are interested in D-Wave Quantum because to its 1359.5% share price growth over the past year. This remarkable gain has been fueled by the company's good quarterly financial results, the AI-driven infrastructure boom, and rising quantum technology demand.
The recent quantum computational superiority of D-Wave boosts its confidence and commercial differentiation. In the first quarter of 2025, D-Wave solved a real-world materials science problem and published results in Science. A top-tier classical supercomputer would have needed a million years and more energy than the world to solve a problem D-Wave's 1,200-qubit Advantage2 prototype solved in a year. IonQ and Rigetti Computing, which are unprofitable, behind D-Wave.
Annealing quantum computing, a subfield of computing that is ideal for combinatorial and optimisation tasks, is D-Wave's specialisation. The growing range of production applications shows that D-Wave devices are instant-deployable. Unlike many of its competitors, which focus on gate-based approaches in development.
D-Wave Quantum appears financially stable, which will help it profit. The corporation had a record $304.3 million cash balance in the first quarter of 2025. The quarter's $146.2 million nett proceeds from its third At-The-Market (ATM) issuance strengthened its financial position.
D-Wave's management is confident that this large cash reserve will fund operations until profitability, making the company one of the most capital-efficient in quantum computing. Technology helps D-Wave Quantum succeed. The market trusts the company's financial health and future prospects because its 50-day SMA routinely exceeds its 200-day SMA. D-Wave Quantum's second-quarter and full-year 2025 earnings are expected to rise 72% and 30%, respectively, according to Zacks.
The audacious quantum computing project by IBM has renewed competition. IBM's new Quantum Starling, a large-scale, fault-tolerant quantum computer that can perform 20,000 times more operations than existing machines, challenges the market. In its broad roadmap, IBM plans to provide modular scalability and fault tolerance by the end of the decade. IBM's planned move demonstrates its long-term ambition of leading corporate quantum technology, but also raises problems for smaller startups like D-Wave Quantum.
D-Wave Quantum appears to be able to withstand competition even with IBM's renewed effort. The company's singular achievement of real-world quantum supremacy, confirmed by a peer-reviewed Science paper, distinguishes it from competitors that focus on gate-based systems with fewer commercial deployments. D-Wave's production-ready annealing solutions are already targeting a bigger market, so IBM's large quantum technology investment is intriguing.
Zacks.com believes that D-Wave has a large growth runway despite IBM's quantum race entry. D-Wave Quantum may provide longer-term investors more upside due to its strong first-quarter 2025 performance, rising business usage, and Zacks Rank #2 (Buy).
To conclude
This June 2025 Zacks Analyst Blog highlights D-Wave Quantum (QBTS) and IBM, two quantum computer companies seeing tremendous growth. D-Wave's stock performance and quantum dominance in addressing a difficult materials science problem set it apart from rivals like IonQ and Rigetti Computing. IBM's planned effort to join quantum computing's next step with Quantum Starling may make it difficult for smaller firms like D-Wave to compete.
Even while IBM's developments demonstrate the market's promise, the blog believes D-Wave's unique annealing technology, stable financial position, and recent operational successes position it for growth despite increased competition. The research concludes that D-Wave's fundamentals and market position suggest more upside.
#DWaveQuantumNews#IonQ#RigettiComputing#IBMQuantumStarling#DWave#News#Technews#Technology#Technologynews#Technologytrends#Govindhtech
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They can also find underlying solutions to diseases such as Alzheimer's that we weren’t able to discover without proper computing power. That's why companies like #Google, #Microsoft, #IBM and super successful startups such as D-Wave and Rigetti Computing are investing millions and millions of dollars into quantum computers.
#Quantum#qbit#quantumcomputers#dwave#reseachanddevelopment#RigettiComputers#pharmaceuticalndustry#pharmaceutical#ehealth#healthcaremanagement#google#microsoft#ibm
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https://github.com/rigetticomputing/pyquil
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Inflection Quantum Coming Sooner Says NVIDIA CEO

Quantum Inflection
NVIDIA CEO: Quantum Is Approaching a "Inflection Point," Signalling a Change in Attitude
NVIDIA CEO Jensen Huang said quantum computing is approaching a “critical inflection point,” which would transform its immediate practical use. Huang's keynote talk at NVIDIA's GTC Paris developer conference on June 12, 2025, was far more optimistic than his previous views on the technology's timeline. His latest study shows that quantum computers are “within reach” and may soon address difficult real-world problems.
Huang's recent bullishness differs from his earlier forecasts. Before, he estimated 15 to 20 years for quantum computation to become feasible. D-Wave Quantum, IonQ, and Rigetti Computing stock prices plummeted after these early, gloomy comments had a “chilling effect” on the market.
Huang later acknowledged that his former ideas “came out wrong” and may have been “misunderstood.” The massive market reaction also surprised him. Pre-market increases for Rigetti and IonQ after his recent comments illustrate that industry experts' perspectives positively connect with quantum equities' success, making his more optimistic outlook crucial.
Several factors explain this industry attitude shift and the prospect of a turning point. Improved quantum computing industry confidence and investment are key. IonQ has acquired UK trapped-ion quantum processor specialist Oxford Ionics for $1.1 billion. This large investment shows quantum technology's potential and commercial viability. Huang also credits the expanding European quantum computing sector, citing his recent interactions with Pasqal, a French neutral atom startup. European and global companies are investing and cooperating more, boosting sector innovation.
Even without financial investment, concrete technological advances, especially in error correction approaches, are accelerating the timescale for useable quantum computing. When heat or cosmic rays contaminate qubits' fragile quantum states, decoherence occurs, making quantum systems prone to errors.
Effective error correction is needed to maintain quantum computation integrity and accuracy. Google introduced its Willow chip, which it claims corrects errors. Due to IBM's error correction work, fault-tolerant quantum computers that can control and mitigate environmental defects are now expected to be developed by 2029. These advancements overcome a major barrier to stable and scalable quantum systems.
Quantum computers should be useful due to their fundamentally distinct operations. Traditional computers store data in 0 or 1 bits. Quantum computers use “qubits.” Due to quantum mechanical superposition, qubits can represent 0 and 1. Quantum computers may solve complex issues that traditional machines cannot due to their unique capabilities.
They can process greater datasets and perhaps investigate numerous answers. These problems drive AI, finance, materials science, medical, and drug development research and business investment. One of the most promising technologies of the moment, quantum computing, can change industries and solve previously unsolvable issues by doing complicated computations tenfold quicker than ordinary computers.
In addition to acknowledging this transformation, NVIDIA is creating solutions that combine classical and quantum capabilities. Their major product in this industry is the hybrid quantum-classical computing CUDA-Q platform. This cutting-edge technology lets developers quickly integrate quantum algorithms into their traditional processes by combining the benefits of both computer paradigms.
The CUDA-Q platform, strategically built to support a variety of back-end quantum systems, allows NVIDIA to profit from quantum computing's growth without being tied to one particular architecture or technology. With its flexible foundation for future quantum advances, this technique acknowledges the hardware limits of today.
The industry appears to concur that quantum computing is expanding swiftly, as seen by Huang's more upbeat perspective, error correction advances, and increased spending. The technique is becoming practical. With quantum computing moving from experimental research to addressing “interesting problems in the coming years,” the scientific community is experiencing a “really exciting time”.
#InflectionQuantum#NVIDIA#DWaveQuantum#RigettiComputing#IonQ#OxfordIonics#quantumprocessors#Pasqal#Qubits#NVIDIACUDAQ#News#Technews#Technology#Technologynews#Technologytrends#Govindhtech
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