Intersubband polaritonics revisited
arXiv:1112.0240 · doi:10.1117/1.JNP.6.061804
Abstract
We revisited the intersubband polaritonics - the branch of mesoscopic physics having a huge potential for optoelectronic applications in the infrared and terahertz domains - and found that, contrary to the general opinion, the Coulomb interactions play crucial role in the processes of light-matter coupling in the considered systems. Electron-electron and electron-hole interactions radically change the nature of the elementary excitations in these systems. We show that intersubband polaritons represent the result of the coupling of a photonic mode with collective excitations, and not non-interacting electron-hole pairs as it was supposed in the previous works on the subject.
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- Robust polaritons in magnetic monolayers of CrI3
- Semiconductor cavity QED: Bandgap induced by vacuum fluctuations
- Intersubband polaritons with spin-orbit interaction
- Theory of intersubband resonance fluorescence
- Microscopic theory of excitons bound by light
- Effect of magnetic field on intersubband polaritons in a quantum well: Strong to weak coupling conversion