4.8 Article

Ultra-broadband on-chip twisted light emitter for optical communications

期刊

LIGHT-SCIENCE & APPLICATIONS
卷 7, 期 -, 页码 -

出版社

CHINESE ACAD SCIENCES, CHANGCHUN INST OPTICS FINE MECHANICS AND PHYSICS
DOI: 10.1038/lsa.2018.1

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资金

  1. National Natural Science Foundation of China [U1701661, 61490712, 61525502, 61435006, 61490715, 91750205, 11774240, 11604218, 61601199]
  2. National Key Research and Development Program of China [2016YFC0102401]
  3. National Basic Research Program of China (973) [2015CB352004]
  4. leading talents of Guangdong province program [00201505]
  5. Natural Science Foundation of Guangdong Province, China [2016A030312010]
  6. Science and Technology Innovation Commission of Shenzhen [KQTD2015071016560101, KQJSCX20170727100838364, KQJSCX20160226193555889, ZDSYS201703031605029]
  7. Guangdong Natural Science Foundation [2017A030313351]
  8. Excellent Young Teacher Program [YQ2014151]
  9. National Research Foundation of Singapore [NRF-CRP12-2013-04]

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On-chip twisted light emitters are essential components of orbital angular momentum (OAM) communication devices(1,2). These devices address the growing demand for high-capacity communication systems by providing an additional degree of freedom for wavelength/frequency division multiplexing (WDM/FDM). Although whispering-gallery-mode-enabled OAM emitters have been shown to possess some advantages(3-5), such as compactness and phase accuracy, their inherent narrow bandwidths prevent them from being compatible with WDM/FDM techniques. Here, we demonstrate an ultra-broadband multiplexed OAM emitter that utilizes a novel joint path-resonance phase control concept. The emitter has a micron-sized radius and nanometer-sized features. Coaxial OAM beams are emitted across the entire telecommunication band from 1,450 to 1,650 nm. We applied the emitter to an OAM communication with a data rate of 1.2 Tbit/s assisted by 30-channel optical frequency combs (OFCs). The emitter provides a new solution to further increase capacity in the OFC communication scenario.

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