This quantum battery upends the rules of charging
'It's very counterintuitive': This quantum battery upends the rules of charging
Scientists have made the world's first quantum battery prototype and, unlike conventional batteries, it charges faster the larger it gets. Could these bizarre devices one day power quantum computing – or even your phone?
Everyone knows that the larger the battery, the longer it takes to charge – that's why it can take several hours to charge a laptop and typically all night to charge an electric vehicle.
That's the world we're familiar with, anyway. But in the world of the very small, different rules apply. Quantum mechanics (the science of matter at atomic and subatomic scales) "sort of flips [that] on its head", says James Quach, a quantum science researcher at Csiro, Australia's national science agency.
Quach is working to create a quantum battery that defies common sense by charging faster the bigger it gets. Just as some expect quantum computers to one day revolutionise computing, Quach argues that quantum batteries could be similarly disruptive.
In March 2026, his team made an important breakthrough when they unveiled what they say is the world's first working quantum battery prototype.
The field is still in its infancy, and quantum technology is inherently tricksy. But some scientists say these batteries could one day power quantum devices, while the strongest advocates insist they could even be used to charge everyday devices like phones.
Others, though, remain strongly sceptical about their real-world viability.
Subverting energy limits
Conventional batteries rely on chemical reactions that send 10 billion billion electrons or more rushing through the device they're powering. It sounds impressive, but some now see the technology as outdated.
"Despite major technological improvements, modern batteries still rely on electrochemical processes first explored over two centuries ago," says Dario Ferraro, associate professor of physics at the University of Genova, Italy.
This has led some researchers to look towards quantum batteries – batteries that are powered by quantum effects, rather than chemical reactions.
The world of the very small is an overwhelmingly odd one. And quantum mechanics is no stranger to mind-bending concepts, from "entangled" particles that influence each other at great distances to time that flows backwards.
The research that laid the groundwork for quantum batteries was initially driven by curiosity about which laws of classical physics might be upended in the quantum world. A milestone paper in 2015 showed that quantum entanglement means quantum batteries might charge – and discharge – more efficiently than conventional ones.
"The key point is that quantum batteries are not about storing a great amount of energy, but about delivering it faster and with greater control," says Ferraro.
Quach has tested one way of harnessing these quantum effects to power a battery.
He uses an optical microcavity, an experimental set-up where two tiny mirrors are placed 100nm apart (a width about a thousand times thinner than a human hair). He fills the tiny space between the mirrors with........
