On-demand transfer of trapped photons on a chip.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 27386530.
- Also identified by DOI 10.1126/sciadv.1501690 and PMC identifier 4928939.
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Abstract
Photonic crystal nanocavities, which have modal volumes of the order of a cubic wavelength in the material, are of great interest as flexible platforms for manipulating photons. Recent developments in ultra-high quality factor nanocavities with long photon lifetimes have encouraged us to develop an ultra-compact and flexible photon manipulation technology where photons are trapped in networks of such nanocavities. The most fundamental requirement is the on-demand transfer of photons to and from the trapped states of arbitrary nanocavities. We experimentally demonstrate photon transfer between two nearly resonant nanocavities at arbitrary positions on a chip, triggered by the irradiation of a third nonresonant nanocavity using an optical control pulse. We obtain a high transfer efficiency of ~90% with a photon lifetime of ~200 ps.
Medical subject headings
- Nanotechnology
- Optical Devices
- Optical Phenomena
- Photons