25-channel all-optical gate switches realized by integrating silicon photonic crystal nanocavities
Silicon-based photonic crystal nanocavities with different lattice pitches were monolithically integrated with a total length of only 200 μm, and were operated as a multi-channel all-optical switch with a large processing density of 42 Tb/s/mm2. A pump light and a signal light were assigned to two c...
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Veröffentlicht in: | Optics express 2014-06, Vol.22 (12), p.14263-14274 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Silicon-based photonic crystal nanocavities with different lattice pitches were monolithically integrated with a total length of only 200 μm, and were operated as a multi-channel all-optical switch with a large processing density of 42 Tb/s/mm2. A pump light and a signal light were assigned to two cavity modes in each cavity, and in this way all-optical gate switching was achieved in a 25 channel resonant dip with an energy cost in the femtojoule regime. We also demonstrated a wavelength-division multiplexing operation by selecting three neighboring channels, and thus achieved gate switching without inter-channel optical crosstalk. As far as we know, this was the first demonstration of a many-channel all-optical switch that can handle an optical signal with bit-by-bit Gb/s repetition in an integrated photonic crystal chip. |
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ISSN: | 1094-4087 1094-4087 |
DOI: | 10.1364/OE.22.014263 |