Orbital Angular Momentum Shift Keying Based Optical Communication System
Оптическая система связи на основе манипуляции сдвигом орбитального углового момента
2017-02-22
SCID: 54.1/8jyatshs
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OAM shift keyingfree-space optical communicationorbital angular momentum multiplexingphase hologramsspatial light modulators
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Abstract (AI)
In the free space optical communication, the information can be encoded as the orbital angular momentum (OAM) state of light, which is called OAM shift keying (OAM-SK). This paper has proposed a communication system with OAM-SK, in which an image has been delivered from the transmitter to the receiver successfully in the simulation environment. Specifically, we have carefully designed and implemented the phase holograms used at the transmitter and the receiver for multiplexing and de-multiplexing the OAM states, respectively. At the transmitter, the multiplexing phase hologram designed by the modified Lin's algorithm is loaded on the spatial light modulator 1 (SLM1) to generate the multiplexing vortex beam, which is a superposition of multiple vortex beams with different OAM states. Correspondingly, at the receiver, a novel phase hologram is designed and loaded on the SLM2 to effectively de-multiplex the multiplexing vortex beam in different directions. In our phase hologram used at the receiver, the detected power of each OAM state can be controlled by adjusting the weight coefficient by the modified Lin's algorithm. This way, the incident power can be concentrated to the target OAM states, from which the target OAM states can be detected more effectively than conventional fork grating.
Key Findings
1
A modified Lin’s algorithm designs the transmitter multiplexing hologram and receiver de-multiplexing hologram implemented on spatial light modulators.
2
A simulated transmission successfully delivers an image using multiplexed vortex beams composed of multiple OAM states.
3
The paper proposes an orbital angular momentum shift keying (OAM-SK) free-space optical communication system for encoding information in light’s OAM states.
4
The proposed de-multiplexing approach enables more effective detection of target OAM states than conventional fork gratings, according to the simulation.
5
The receiver hologram separates multiplexed OAM states into different directions and concentrates incident power on selected states through adjustable weight coefficients.
6
key_findings_ru
Research Object
OAM shift-keying free-space optical communication system transmitting multiplexed vortex beams
Research Subject
Multiplexing and directional de-multiplexing of OAM states, including controllable detected power and improved state detection effectiveness
Publication Details
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2017-02-22
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