2016
DOI: 10.1007/s10825-016-0863-9
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Design of ultrafast all-optical pulsed-mode 2  $$\times $$ ×  2 crossbar switch using quantum-dot semiconductor optical amplifier-based Mach–Zehnder interferometer

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Cited by 4 publications
(1 citation statement)
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“…In case of QD SOAs, they are attractive due to many advantages, such as ultra-fast gain response, low noise figure [6], and high efficiency of Four Wave Mixing (FWM) or Cross Gain Modulation (XGM) for wavelength conversion [35][36][37][38] as well as Cross Phase Modulation (XPM) for all-optical signal processing, e.g. logic (XOR & AND) gates [39,40], 2x2 switch [41], and D flip-flop [42]. Plus, the QD SOAs can be applied in very high bit-rate up to 40 Gb/s [35][36][37][38]43] in various applications using different modulation formats, such as QPSK, 8-PSK [36], 16-QAM [36,43], and PAM-4 [37,38].…”
Section: Introductionmentioning
confidence: 99%
“…In case of QD SOAs, they are attractive due to many advantages, such as ultra-fast gain response, low noise figure [6], and high efficiency of Four Wave Mixing (FWM) or Cross Gain Modulation (XGM) for wavelength conversion [35][36][37][38] as well as Cross Phase Modulation (XPM) for all-optical signal processing, e.g. logic (XOR & AND) gates [39,40], 2x2 switch [41], and D flip-flop [42]. Plus, the QD SOAs can be applied in very high bit-rate up to 40 Gb/s [35][36][37][38]43] in various applications using different modulation formats, such as QPSK, 8-PSK [36], 16-QAM [36,43], and PAM-4 [37,38].…”
Section: Introductionmentioning
confidence: 99%