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
2012-04-09
SCID: 54.1/qmcd4365
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free-space coherent optical communicationorbital angular momentumquadrature phase-shift keyingsilicon photonic integrated circuitsspatial-division multiplexing
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Abstract (AI)
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.
Key Findings
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.
Research Object
integrated silicon photonic circuits for free-space optical transmission using multiplexed orbital angular momentum states
Research Subject
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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