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Quantum Battery

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Quantum batteries defy charging rules by charging faster as they grow
technology1 day ago

Quantum batteries defy charging rules by charging faster as they grow

Scientists at CSIRO have unveiled the world’s first working quantum battery prototype that charges faster as its size increases due to a quantum effect called superabsorption inside an optical microcavity. The setup enables femtosecond charging and nanosecond energy storage at room temperature, offering a proof of concept that quantum devices could be powered more efficiently—and perhaps someday energize everyday gadgets. However, the energy stored today is tiny, and challenges like decoherence and energy extraction remain, leaving the path to practical, large-scale use uncertain and likely focused on quantum computing first.

Laser-charged quantum battery could store years of energy from a minute’s charge
technology3 months ago

Laser-charged quantum battery could store years of energy from a minute’s charge

A team led by the University of Melbourne and CSIRO built a miniature quantum battery that stores energy via quantum coherence in a microcavity (Dicke model); by firing a laser pulse with a 31‑nm bandwidth for a femtosecond (one quadrillionth of a second) they trigger a giant absorption event that charges the battery ultrafast, enabling it to hold a charge for about a million times longer than the charge time—roughly years after a one‑minute charge. Scaling up could allow remote laser charging for drones or quantum computers, though decoherence remains a key challenge.

"Waveguide-Based Quantum Battery: A New Frontier in Energy Storage"
science-and-technology2 years ago

"Waveguide-Based Quantum Battery: A New Frontier in Energy Storage"

Researchers at Boston University have proposed a new charging scheme for quantum batteries using rectangular hollow metal waveguides to overcome environment-induced decoherence and charging distance limitations. By leveraging principles of quantum mechanics such as entanglement and coherence, the study aims to achieve stronger charging power, higher capacity, and larger work extraction compared to classical batteries. The proposed quantum battery model utilizes waveguides to mediate energy transfer between the battery and charger, addressing challenges related to decoherence and charging efficiency. The research opens the possibility of remote-charging and anti-aging quantum batteries with improved effectiveness and durability, paving the way for lighter and thinner devices with greater facilitation.