| year | 2024 |
| author(s) | Lee J S, Farmakidis N, Aggarwal S, Dong B, Zhou W, Pernice W, Bhaskaran H |
| title | Spatio-spectral control of coherent nanophotonics |
| KIP-Nummer | HD-KIP 24-03 |
| KIP-Gruppe(n) | F31 |
| document type | Paper |
| Keywords (shown) | active photonics; photonic spatio-spectral reconfiguration; phase-change materials |
| source | Nanophotonics |
| doi | 10.1515/nanoph-2023-0651 |
| Abstract (en) | Fast modulation of optical signals that carry multidimensional information in the form of wavelength, phase or polarization has fueled an explosion of interest in integrated photonics. This interest however masks a significant challenge which is that independent modulation of multi-wavelength carrier signals in a single waveguide is not trivial. Such challenge is attributed to the longitudinal direction of guided-mode propagation, limiting the spatial separation and modulation of electric-field. Here, we overcome this using a single photonic element that utilizes active coherent (near) perfect absorption. We make use of standing wave patterns to exploit the spatial-degrees-of-freedom of in-plane modes and individually address elements according to their mode number. By combining the concept of coherent absorption in spatio-spectral domain with active phase-change nanoantennas, we engineer and test an integrated, reconfigurable and multi-spectral modulator operating within a single element. Our approach demonstrates for the first time, a non-volatile, wavelength-addressable element, providing a pathway for exploring the tunable capabilities in both spatial and spectral domains of coherent nanophotonics. |
| bibtex | @article{Lee2024,
author = {June Sang Lee and Nikolaos Farmakidis and Samarth Aggarwal and Bowei Dong and Wen Zhou and Wolfram H. P. Pernice and Harish Bhaskaran},
title = {Spatio-spectral control of coherent nanophotonics},
journal = {Nanophotonics},
year = {2024},
doi = {doi:10.1515/nanoph-2023-0651},
url = {https://doi.org/10.1515/nanoph-2023-0651}
} |