| Literature DB >> 30068975 |
Emir Salih Magden1,2, Nanxi Li3,4, Manan Raval3, Christopher V Poulton3,5, Alfonso Ruocco3,6, Neetesh Singh3, Diedrik Vermeulen3,5, Erich P Ippen3, Leslie A Kolodziejski3, Michael R Watts3.
Abstract
Many optical systems require broadband filters with sharp roll-offs for efficiently splitting or combining light across wide spectra. While free space dichroic filters can provide broadband selectivity, on-chip integration of these high-performance filters is crucial for the scalability of photonic applications in multi-octave interferometry, spectroscopy, and wideband wavelength-division multiplexing. Here we present the theory, design, and experimental characterization of integrated, transmissive, 1 × 2 port dichroic filters using spectrally selective waveguides. Mode evolution through adiabatic transitions in the demonstrated filters allows for single cutoff and flat-top responses with low insertion losses and octave-wide simulated bandwidths. Filters with cutoffs around 1550 and 2100 nm are fabricated on a silicon-on-insulator platform with standard complementary metal-oxide-semiconductor processes. A filter roll-off of 2.82 dB nm-1 is achieved while maintaining ultra-broadband operation. This new class of nanophotonic dichroic filters can lead to new paradigms in on-chip communications, sensing, imaging, optical synthesis, and display applications.Entities:
Year: 2018 PMID: 30068975 PMCID: PMC6070617 DOI: 10.1038/s41467-018-05287-1
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919