Presentation + Paper
20 June 2024 Two-particle quantum correlations in nano and macro single-mode lasers
F. Papoff, G. D'Alessandro, G. L. Lippi, G.-L. Oppo
Author Affiliations +
Abstract
We compare a novel quantum mechanical model of lasers, which includes all two-particle correlations, with the Coherent-Incoherent Model (CIM), where truncation eliminates these effects. Numerical results for the simple case of identical single-electron quantum dots are presented for two cases: only the laser mode is coupled to the quantum dots; the coupling is extended to non-resonant modes. We find coexistence between non-lasing and lasing states, together with a minimum number of photons required to initiate the laser action. The correlations introduce a non-zero variance in the field, which is otherwise strictly zero in the absence of interparticle correlations.
Conference Presentation
© (2024) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
F. Papoff, G. D'Alessandro, G. L. Lippi, and G.-L. Oppo "Two-particle quantum correlations in nano and macro single-mode lasers", Proc. SPIE 13002, Semiconductor Lasers and Laser Dynamics XI, 1300208 (20 June 2024); https://doi.org/10.1117/12.3024493
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KEYWORDS
Quantum correlations

Quantum modeling

Photons

Quantum dots

Phonons

Quantum phenomena

Nonlinear dynamics

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