A cavity containing an array of charged quantum harmonic oscillators pumped with low-frequency photons can detect single gravitons through correlated photon emissions or absorptions, circumventing Dyson's non-detectability argument.
Gravitationally induced en- tanglement between two massive particles is sufficient ev- idence of quantum effects in gravity
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Charged Weber bars inside an electromagnetically shielded cavity emit photons when struck by gravitational waves, enabling detection through frequency-controlled spontaneous emission in a cavity-QED setup.
citing papers explorer
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`Seeing' the quantum ripples of spacetime
A cavity containing an array of charged quantum harmonic oscillators pumped with low-frequency photons can detect single gravitons through correlated photon emissions or absorptions, circumventing Dyson's non-detectability argument.
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Detecting gravitational waves by emission of photons from charged Weber bars
Charged Weber bars inside an electromagnetically shielded cavity emit photons when struck by gravitational waves, enabling detection through frequency-controlled spontaneous emission in a cavity-QED setup.