Atmospheric Turbulence and Orbital Angular Momentum of Single Photons for Optical Communication
Атмосферная турбулентность и орбитальный угловой момент одиночных фотонов для оптической связи
2005-04-18
SCID: 54.1/suxttxp8
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atmospheric turbulencechannel capacityorbital angular momentumrotational coherence functionsingle-photon communication
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Abstract (AI)
The effects of propagation through random aberrations on coherence for single-photon communication systems based on orbital angular momentum states are quantified. A rotational coherence function is derived which leads to scattering equations for azimuthal modes of different orbital angular momentum states. The effect on a single-photon communication system is quantified using the channel capacity. The work shows that the decoherence effect of atmospheric turbulence on such systems is important even for weak turbulence.
Key Findings
1
A rotational coherence function is derived, yielding scattering equations for azimuthal modes with different orbital angular momentum values.
2
Atmospheric turbulence effects on the communication channel are quantified through the channel capacity.
3
Even weak atmospheric turbulence causes important decoherence and can significantly affect orbital-angular-momentum-based single-photon communication.
4
The study quantifies how random atmospheric aberrations reduce coherence in single-photon communication systems using orbital angular momentum states.
Research Object
single-photon optical communication systems using orbital angular momentum states propagating through atmospheric turbulence
Research Subject
turbulence-induced decoherence, azimuthal-mode scattering, and channel-capacity degradation
Publication Details
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2005-04-18
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