Nonperturbative model predicts strong photon-pair emission peak from fiber end when optical-length oscillation amplitude equals half laser wavelength.
Plasmon-supported emission of entangled photons and zero-point energy
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abstract
Emission of pairs of photons in the interface metal-dielectric under the laser excitation arising due to the time-dependent perturbation of the zero-point fluctuations of the electromagnetic field by photons of the laser is considered. The enhancement of this emission by surface plasmons may be used for getting polarization-entangled photons. A possibility to compensate the energy of the zero-point fluctuations of bosons by other fluctuations with negative energy is discussed.
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Emission of photon pairs in optical fiber -- effect of zero-point fluctuations
Nonperturbative model predicts strong photon-pair emission peak from fiber end when optical-length oscillation amplitude equals half laser wavelength.