Unconventional ambient superconductivity by capturing optically inaccessible dark excitons within an organic superconducting matrix


"elusive, bound electron-hole pairs do not interact with light, so difficult to detect/ utilize... overcome capturing real-time dynamics/ energy states by tracking laser-induced wave packets' coherent quantum interference patterns... provides critical, previously missing empirical insights into underlying quantum mechanisms governing high-temperature superconductivity... next-generation quantum materials and more efficient energy-transmission systems"

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