Excitability and optical pulse generation in semiconductor lasers driven by resonant tunneling diode photo-detectors
We demonstrate, experimentally and theoretically, excitable nanosecond optical pulses in optoelectronic integrated circuits operating at telecommunication wavelengths (1550 nm) comprising a nanoscale double barrier quantum well resonant tunneling diode (RTD) photo-detector driving a laser diode (LD)...
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Veröffentlicht in: | Optics express 2013-09, Vol.21 (18), p.20931-20940 |
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creator | Romeira, Bruno Javaloyes, Julien Ironside, Charles N Figueiredo, José M L Balle, Salvador Piro, Oreste |
description | We demonstrate, experimentally and theoretically, excitable nanosecond optical pulses in optoelectronic integrated circuits operating at telecommunication wavelengths (1550 nm) comprising a nanoscale double barrier quantum well resonant tunneling diode (RTD) photo-detector driving a laser diode (LD). When perturbed either electrically or optically by an input signal above a certain threshold, the optoelectronic circuit generates short electrical and optical excitable pulses mimicking the spiking behavior of biological neurons. Interestingly, the asymmetric nonlinear characteristic of the RTD-LD allows for two different regimes where one obtain either single pulses or a burst of multiple pulses. The high-speed excitable response capabilities are promising for neurally inspired information applications in photonics. |
doi_str_mv | 10.1364/OE.21.020931 |
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When perturbed either electrically or optically by an input signal above a certain threshold, the optoelectronic circuit generates short electrical and optical excitable pulses mimicking the spiking behavior of biological neurons. Interestingly, the asymmetric nonlinear characteristic of the RTD-LD allows for two different regimes where one obtain either single pulses or a burst of multiple pulses. 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When perturbed either electrically or optically by an input signal above a certain threshold, the optoelectronic circuit generates short electrical and optical excitable pulses mimicking the spiking behavior of biological neurons. Interestingly, the asymmetric nonlinear characteristic of the RTD-LD allows for two different regimes where one obtain either single pulses or a burst of multiple pulses. The high-speed excitable response capabilities are promising for neurally inspired information applications in photonics.</abstract><cop>United States</cop><pmid>24103966</pmid><doi>10.1364/OE.21.020931</doi><tpages>10</tpages><oa>free_for_read</oa></addata></record> |
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title | Excitability and optical pulse generation in semiconductor lasers driven by resonant tunneling diode photo-detectors |
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