Design and Analysis of XOR Logic Gate Based on Two-Photon Absorption
Two-photon absorption with high intensity pump beam occurs in a SOA depends on fast phase change of a weak probe signal. This work analysed optical XOR logic function using two-photon absorption induced fast phase change. A rate equation for SOA and both input data signals A and B with high intensit...
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Published in: | MATEC Web of Conferences Vol. 78; p. 1108 |
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Abstract | Two-photon absorption with high intensity pump beam occurs in a SOA depends on fast phase change of a weak probe signal. This work analysed optical XOR logic function using two-photon absorption induced fast phase change. A rate equation for SOA and both input data signals A and B with high intensity, configured in the form of MZI has also been proved. The model shows that XOR operation at 10 Gb/s with good signal to noise ratio is obtained with high input intensities. The result on the generation of XOR indicates that operations on 10 Gb/s with a high signal to noise ratio can easily be implemented. The average input power into the SOA is 20 dbm corresponding to the peak power of 5.5 dBm at 10 Gb/s when the width of the input pulse 3.6 ps. The short narrow pulse width is utilised in the study for stronger effect of two-photon absorption. |
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AbstractList | Two-photon absorption with high intensity pump beam occurs in a SOA depends on fast phase change of a weak probe signal. This work analysed optical XOR logic function using two-photon absorption induced fast phase change. A rate equation for SOA and both input data signals A and B with high intensity, configured in the form of MZI has also been proved. The model shows that XOR operation at 10 Gb/s with good signal to noise ratio is obtained with high input intensities. The result on the generation of XOR indicates that operations on 10 Gb/s with a high signal to noise ratio can easily be implemented. The average input power into the SOA is 20 dbm corresponding to the peak power of 5.5 dBm at 10 Gb/s when the width of the input pulse 3.6 ps. The short narrow pulse width is utilised in the study for stronger effect of two-photon absorption. |
Author | Ramli, M.M. Hasanuddin, N.H. Nazir, N.S. Wahid, M.H.A. Shahimin, M.M. Hambali, N.A.M.A. Khairuddin, N.Z. |
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Cites_doi | 10.1049/el:20057774 10.1049/el:20063241 10.1142/9789812707239 10.1109/68.853516 10.1109/JQE.2004.828261 10.4018/ijcac.2012070101 10.1002/9780470152560 10.1109/LPT.2004.823750 |
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Editor | Ramli, M.M. Abd Rahim, S.Z. Mat Saad, N. Sharif, S. Ghazali, M.F. Zainol Murad, S.A. Mat Isa, S.S. Abdullah, M.M.A.B. |
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Snippet | Two-photon absorption with high intensity pump beam occurs in a SOA depends on fast phase change of a weak probe signal. This work analysed optical XOR logic... |
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SubjectTerms | Logic circuits Optical communication Phase change Phase transitions Photon absorption Pulse duration Signal to noise ratio |
Title | Design and Analysis of XOR Logic Gate Based on Two-Photon Absorption |
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