Demonstration of free space coherent optical communication using integrated silicon photonic orbital angular momentum devices

Демонстрация когерентной оптической связи в свободном пространстве с использованием интегрированных кремниевых фотонных устройств на основе орбитального углового момента
S. J. Ben Yoo, Tiehui Su, Ryan P. Scott, Stevan S. Djordjevic, Nicolas K. Fontaine, David J. Geisler, Xinran Cai
2012-04-09

free-space coherent optical communicationorbital angular momentumquadrature phase-shift keyingsilicon photonic integrated circuitsspatial-division multiplexing
We propose and demonstrate silicon photonic integrated circuits (PICs) for free-space spatial-division-multiplexing (SDM) optical transmission with multiplexed orbital angular momentum (OAM) states over a topological charge range of -2 to +2. The silicon PIC fabricated using a CMOS-compatible process exploits tunable-phase arrayed waveguides with vertical grating couplers to achieve space division multiplexing and demultiplexing. The experimental results utilizing two silicon PICs achieve SDM mux/demux bit-error-rate performance for 1‑b/s/Hz, 10-Gb/s binary phase shifted keying (BPSK) data and 2-b/s/Hz, 20-Gb/s quadrature phase shifted keying (QPSK) data for individual and two simultaneous OAM states.
1
CMOS-compatible silicon photonic integrated circuits were demonstrated for free-space spatial-division-multiplexed optical transmission using multiplexed OAM states.
2
The devices support multiplexing and demultiplexing of orbital angular momentum states with topological charges ranging from -2 to +2.
3
The system also demonstrated 2-b/s/Hz, 20-Gb/s QPSK transmission for individual and two simultaneous OAM states with measured bit-error-rate performance.
4
Tunable-phase arrayed waveguides combined with vertical grating couplers enable integrated spatial multiplexing and demultiplexing.
5
Two silicon photonic circuits experimentally achieved 1-b/s/Hz, 10-Gb/s BPSK transmission for individual and simultaneous pairs of OAM states.

integrated silicon photonic circuits for free-space optical transmission using multiplexed orbital angular momentum states

spatial-division multiplexing/demultiplexing performance, including bit-error rates, for OAM-state transmission of BPSK and QPSK data

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2012-04-09
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S. J. Ben Yoo
Tiehui Su
Ryan P. Scott
Stevan S. Djordjevic
Nicolas K. Fontaine
David J. Geisler
Xinran Cai
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