Multiplexed Single-Mode Wavelength-to-Time Mapping of Multimode Light
arXiv:1604.02495 · doi:10.1038/ncomms14080
Abstract
We demonstrate that photonic lanterns based on tapered multicore fibres provide an efficient way to couple multimode states of light to a two-dimensional array of Single-Photon Avalanche Detectors (SPADs), each of which has its own Time-to-Digital Converter (TDC) for Time-Correlated Single-Photon-Counting (TCSPC). Exploiting this capability, we demonstrate multiplexed single-mode wavelength-to-time conversion of multimode states of light using a multicore-fibre photonic lantern with 121 single-mode cores, coupled in a one-to-one fashion to 121 SPADS on a 32 32 pixel CMOS SPAD array. The application of photonic lanterns for coupling multimode light to SPAD arrays in this manner may find wide-ranging applications in areas such as Raman spectroscopy, coherent LIDAR and quantum optics.
15 pages, 4 figures
References in corpus (2)
Cited by in corpus (10)
- Modes and states in Quantum Optics
- 2023 Astrophotonics Roadmap: pathways to realizing multi-functional integrated astrophotonic instruments
- State-recycling and time-resolved imaging in topological photonic lattices
- Compressive optical imaging with a photonic lantern
- A trillion frames per second: the techniques and applications of light-in-flight photography
- Robust ultrashort light bullets in strongly twisted waveguide arrays
- Ballistic and snake photon imaging for locating optical endomicroscopy fibres
- Learning the Lantern: Neural network applications to broadband photonic lantern modelling
- Three-Mode Photonic Lanterns: Comprehensive Analysis from Theory to Experiments
- Review of high-contrast imaging systems for current and future ground-based and space-based telescopes III. Technology opportunities and pathways