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Researchers Propose Using Quantum Batteries to Power Quantum Computers - The Quantum Insider

Google News – Quantum Computing
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Researchers from CSIRO, University of Queensland, and OIST proposed using quantum batteries to power quantum computers, potentially solving key scaling challenges. Their study in Physical Review X demonstrates a theoretical fourfold increase in qubit capacity. Quantum batteries could eliminate reliance on energy-intensive cryogenic cooling by recycling internal energy, reducing heat and infrastructure demands. The team compares it to an "internal fuel tank" that recharges during operation. The batteries leverage quantum entanglement, linking with qubits to enable continuous recharging via light exposure. This design cuts wiring complexity and physical space needs while boosting computational efficiency. Modelling suggests quantum superextensivity—where more qubits accelerate processing—could further enhance speed. The next phase involves building a real-world prototype to validate the theory. If successful, this approach may advance quantum computing’s practicality, addressing energy, cooling, and scalability barriers while pioneering quantum energy systems for broader applications.
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PRESS RELEASE — Scientists have unveiled a new approach to powering quantum computers using quantum batteries — a breakthrough that could make future computers faster, more reliable and more energy efficient. Quantum computers rely on the rules of quantum physics to solve problems that could transform computing, medicine, energy, finance, communications and many other fields in the years ahead. But sustaining their delicate quantum states typically requires room-sized, energy-intensive cryogenic cooling systems, as well as a system of room-temperature electronics. These infrastructure and energy requirements remain the biggest barriers to scaling up quantum computers, limiting their size and processing power, restricting their applications and slowing their path to market. In a new study published in Physical Review X (PRX), a team of researchers at Australia’s national science agency, CSIRO, University of Queensland and the Okinawa Institute of Science and Technology (OIST), has theoretically shown how tiny quantum batteries could power a quantum computer — increasing its number of quantum bits (known as qubits) fourfold.

Dr James Quach, co-author of the study and CSIRO’s quantum batteries research lead, explained that the computers use significantly less energy because internal quantum batteries can recycle the energy in the system. “Quantum batteries are small and mighty. Our findings bring us one step closer to solving the energy, cooling and infrastructure challenges restricting quantum computers,” said Dr Quach. “It’s like giving the computer its own internal fuel tank. Instead of constantly refilling it from the electricity grid, the battery recharges while the computer operates. “This research forms a key step in our exploration of quantum energy — an emerging field that could fundamentally reshape the way we create efficient, sustainable energy systems,” he said. Quantum batteries are devices that store energy using light, allowing them to recharge simply by being exposed to it. When integrated into a quantum computer, they can be continually recharged by the machine’s own components. In this system, the battery becomes linked with the computer’s quantum processing units through a phenomenon known as entanglement, creating a shared quantum connection. “We’ve calculated that quantum-battery-operated systems will generate significantly less heat, require fewer wiring components, and fit more qubits into the same physical space — all important steps toward building practical, scalable quantum computers,” explained Dr Quach. Modelling also suggests the architecture could improve computational speed through what’s called quantum superextensivity, a phenomenon where the more qubits there are, the faster they are. “The paper reports the theoretical modelling of how quantum batteries could power existing quantum computers, the team’s next step is to develop a real-world demonstration of this approach. “While quantum batteries remain an emerging technology and further development is required, this approach creates exciting possibilities for the future of quantum computing,” said Dr Quach. Keep track of everything going on in the Quantum Technology Market. hbspt.forms.create({ portalId: "7697776", formId: "bb678241-852f-447e-b9b3-fdc974f72f81", region: "na1", onFormReady: function($form) { const conversionPageField = $form.find('input[name="conversion_page"]'); if (conversionPageField.length) { conversionPageField.val(window.location.href); } const verticalField = $form.find('input[name="vertical"]'); if (verticalField.length) { verticalField[0].value = 'Quantum'; } } }); [ivory-search id=”2367594″ title=”Custom Search Form”] One of our team will be in touch to learn more about your requirements, and provide pricing and access options. Necessary cookies are always on to ensure the website works. Optional cookies help us understand how the site is used.

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