access icon free Performance of all-optical AND gate using photonic-crystal QDSOA at 160 Gb/s

An all-optical AND gate using photonic-crystal quantum dot semiconductor optical amplifiers is designed and its performance is evaluated. The input–output characteristics of the gate are simulated using a rate equation model and it is found that the gate can achieve a maximum of ∼9 dB extinction ratio at 160 Gb/s. The proposed gate is compared with quantum dot semiconductor optical amplifiers AND gate to evaluate its effectiveness with regard to signal quality, device size, and power consumption.

Inspec keywords: optical logic; photonic crystals; logic gates; semiconductor quantum dots; semiconductor optical amplifiers

Other keywords: rate equation model; bit rate 160 Gbit/s; signal quality; photonic-crystal QDSOA; input–output characteristics; all-optical AND gate performance; device size; photonic-crystal quantum dot semiconductor optical amplifiers; power consumption

Subjects: Optical logic devices and optical computing techniques; Logic circuits; Logic and switching circuits; Optical computers, logic elements, and interconnects; Lasing action in semiconductors; Semiconductor lasers; Optical logic elements

http://iet.metastore.ingenta.com/content/journals/10.1049/el.2018.0371
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