A thermal ensemble of 10^12 rubidium atoms functions as a room-temperature quantum battery with capacity enhanced by coherence and quantitatively linked to entropy measures via operational unitary protocols.
Title resolution pending
5 Pith papers cite this work. Polarity classification is still indexing.
years
2026 5verdicts
UNVERDICTED 5representative citing papers
Phase engineering in waveguide QED enables unidirectional remote charging of quantum batteries with independent control of nonreciprocity and storage efficiency across four emitter-waveguide configurations.
Finite quantum batteries in geometric Landau-Zener interferometry produce sector-resolved evolution, contrast loss, and back-action that benchmark phase-coherent energy delivery.
Energy oscillations between electron and nuclear transitions in 229Th ions enable a coherent electron bridge for isomer excitation and a nuclear quantum battery.
Nonreciprocity modulates inter-dot information flow in a quantum dot information engine and maps to an effective reciprocal system via reparameterized chemical potentials.
citing papers explorer
-
Thermal vapor quantum battery based on collective atomic spins
A thermal ensemble of 10^12 rubidium atoms functions as a room-temperature quantum battery with capacity enhanced by coherence and quantitatively linked to entropy measures via operational unitary protocols.
-
Phase-tunable remote nonreciprocal charging in waveguide QED
Phase engineering in waveguide QED enables unidirectional remote charging of quantum batteries with independent control of nonreciprocity and storage efficiency across four emitter-waveguide configurations.
-
Quantum-Battery-Powered Geometric Landau-Zener Interferometry
Finite quantum batteries in geometric Landau-Zener interferometry produce sector-resolved evolution, contrast loss, and back-action that benchmark phase-coherent energy delivery.
-
Long Time Energy Oscillation Between Electron Shell and Nucleus in $^{229}$Th Ions and Coherent Electron Bridge for Nuclear Quantum Battery
Energy oscillations between electron and nuclear transitions in 229Th ions enable a coherent electron bridge for isomer excitation and a nuclear quantum battery.
-
Manipulation of information flow and thermodynamic performance in nonreciprocal quantum dot information engines
Nonreciprocity modulates inter-dot information flow in a quantum dot information engine and maps to an effective reciprocal system via reparameterized chemical potentials.