High-capacity millimetre-wave communications with orbital angular momentum multiplexing
Высокоскоростная миллиметровая связь с мультиплексированием по орбитальному угловому моменту
2014-09-16
SCID: 54.1/sahanmqm
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coaxial data transmissionmillimetre-wave communicationsmode demultiplexerorbital angular momentum multiplexingspectral efficiency
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Abstract (AI)
One property of electromagnetic waves that has been recently explored is the ability to multiplex multiple beams, such that each beam has a unique helical phase front. The amount of phase front ‘twisting’ indicates the orbital angular momentum state number, and beams with different orbital angular momentum are orthogonal. Such orbital angular momentum based multiplexing can potentially increase the system capacity and spectral efficiency of millimetre-wave wireless communication links with a single aperture pair by transmitting multiple coaxial data streams. Here we demonstrate a 32-Gbit s−1 millimetre-wave link over 2.5 metres with a spectral efficiency of ~16 bit s−1 Hz−1 using four independent orbital–angular momentum beams on each of two polarizations. All eight orbital angular momentum channels are recovered with bit-error rates below 3.8 × 10−3. In addition, we demonstrate a millimetre-wave orbital angular momentum mode demultiplexer to demultiplex four orbital angular momentum channels with crosstalk less than −12.5 dB and show an 8-Gbit s−1 link containing two orbital angular momentum beams on each of two polarizations. High speed data transmission using orbital angular momentum beams has been recently demonstrated. Here, Yan et al. demonstrate a 32 Gbit/s millimetre-wave communication link using eight coaxially propagating independent orbital angular momentum beams with four orbital angular momentum states on two orthogonal polarizations.
Key Findings
1
A millimetre-wave mode demultiplexer separated four orbital angular momentum channels with crosstalk below −12.5 dB.
2
An additional 8-Gbit s−1 link demonstrated two orbital angular momentum beams on each of two orthogonal polarizations.
3
Eight independent channels—four orbital angular momentum beams on each of two polarizations—were recovered with bit-error rates below 3.8 × 10−3.
4
Orbital angular momentum multiplexing enables multiple coaxial, orthogonal millimetre-wave data channels through a single aperture pair.
5
The demonstrated link transmitted 32 Gbit s−1 over 2.5 metres with approximately 16 bit s−1 Hz−1 spectral efficiency.
Research Object
millimetre-wave wireless communication links using coaxial orbital angular momentum beams
Research Subject
high-capacity data transmission performance, spectral efficiency, channel recovery, and crosstalk in orbital angular momentum multiplexing
Publication Details
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2014-09-16
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