All-optical half adder using single mechanism of XGM in semiconductor optical amplifiers

Authors
Kim, SHKim, JHChoi, JWSon, CWOk, SHByun, YTJhon, YMLee, SWoo, DHKim, SH
Issue Date
2004
Publisher
SPIE-INT SOC OPTICAL ENGINEERING
Citation
Conference on Semiconductor Lasers and Applications II, v.5628, pp.94 - 101
Abstract
By using gain nonlinearity characteristics of semiconductor optical amplifier, an all-optical binary half adder at 10 Gbps is demonstrated. The half adder operates in single mechanism, which is XGM. The half adder utilizes two logic functions of SUM and CARRY, which can be demonstrated by using the XOR gate and the AND gate, respectively. In the XOR (A (B) over bar+(A) over barB) gate, Boolean A (B) over bar is obtained by using signal A as a probe beam and signal B as a pump beam in SOA-1. Also,Boolean AB is obtained by using signal B as a probe beam and signal A as a pump beam in SOA-2. By adding two outputs from SOA-1 and SOA-2, Boolean A (B) over bar+(A) over barB (logicXOR)can be obtained. In the AND (AB) gate, Boolean (B) over bar is firstly obtained by using signal B as a pump beam and clock signal as a probe beam in SOA-3. By passing signal A as a probe beam and (B) over bar as a pump beam through SOA-4, Boolean AB is acquired. By achieving this experiment, we also explored the possibilities for the enhanced complex logic operation and higher chances for multiple logic integration.
ISSN
0277-786X
URI
https://pubs.kist.re.kr/handle/201004/117057
DOI
10.1117/12.576572
Appears in Collections:
KIST Conference Paper > 2004
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