Quantum-correlated two-photon transitions to excitons in semiconductor quantum wells
arXiv:1109.6895 · doi:10.1364/OE.20.004470
Abstract
The dependence of the excitonic two-photon absorption on the quantum correlations (entanglement) of exciting biphotons by a semiconductor quantum well is studied. We show that entangled photon absorption can display very unusual features depending on space-time-polarization biphoton parameters and absorber density of states for both bound exciton states as well as for unbound electron-hole pairs. We report on the connection between biphoton entanglement, as quantified by the Schmidt number, and absorption by a semiconductor quantum well. Comparison between frequency-anti-correlated, unentangled and frequency-correlated biphoton absorption is addressed. We found that exciton oscillator strengths are highly increased when photons arrive almost simultaneously in an entangled state. Two-photon-absorption becomes a highly sensitive probe of photon quantum correlations when narrow semiconductor quantum wells are used as two-photon absorbers.
Extended Introduction and results discussion. Results unchanged.2 new figures. Added references.Published version
References in corpus (5)
- Shaping the waveform of entangled photons
- Gaussian modeling and Schmidt modes of SPDS biphoton states
- High-Rate Entanglement Source via Two-Photon Emission from Semiconductor Quantum Wells
- Generation of paired photons in a quantum separable state in Bragg reflection waveguides
- Full Quantum Analysis of Two-Photon Absorption Using Two-Photon Wavefunction: Comparison with One-Photon Absorption
Cited by in corpus (6)
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- Entanglement in Absorption Processes
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