By Preecha Yupapin
""This ebook represents an intensive selection of the main up to date reports approximately nanophotonics and its purposes. this is often an engaging paintings and a very good reference for uplifting scientists and scholars, particularly for these looking thought from the main interesting discoveries within the box of nanophotonics."" -Prof. Asghar Asgari, The collage of Western Australia. Read more...
summary: ""This publication represents an in depth choice of the main up-to-date reviews approximately nanophotonics and its functions. this is often an enticing paintings and a very good reference for uplifting scientists and scholars, specially for these looking concept from the main attention-grabbing discoveries within the box of nanophotonics."" -Prof. Asghar Asgari, The collage of Western Australia
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Extra info for Nanophotonics: devices, circuits, and systems
C. Calhoun, F. G. Johnson, and P. T. Ho, “Vertically coupled GaInAsP-InP microring resonators,” Opt. , 26, 506–508 (2001). 25. V. Van, T. A. Ibrahim, P. P. Absil, F. G. Johnson, and R. Grover, “Optical signal processing using nonlinear semiconductor micro ring resonators,” IEEE J. Sel. Top. , 8, 705–713 (2002). 26. S. Mitatha, N. Pornsuwancharoen, and P. P. Yupapin, “A simultaneous short-wave and millimeter-wave generation using a soliton pulse within a nano-waveguide,” IEEE Photon. Technol. , 13, 932–934 (2009).
3 Simultaneous Half Adder/Subtractor Binary arithmetic is performed like decimal arithmetic, which is presented by the logic gate operation. 1). For the half adder/subtractor with two binary inputs, a simplified Boolean equation is obtained and in which the sum of product for each output is given by Eqs. 15 for the half adder and half subtractor systems. 1 Truth table of the half adder/subtractor Input Half adder Half subtractor A B Sum Carry Diff. Borrow 0 0 1 0 1 0 0 1 1 0 0 0 0 1 1 0 1 0 1 1 0 1 0 0 The simplified output of the sum and difference can also be implemented with the XOR gate, in which the addition and subtraction operations can be combined into one circuit with one common binary adder.
Electromagn. , 99, 383–404 (2009). 21. T. Phatharaworamet, C. Teeka, R. Jomtarak, S. Mitatha, and P. P. Yupapin, “Random binary code generation using dark-bright soliton conversion control within a PANDA ring resonator,” J. , 28(19), 2804–2809 (2010). 22. P. Juleang, P. Phongsanam, S. Mitatha, and P. P. Yupapin, “Public key suppression and recovery using a PANDA ring resonator for high security communication,” Opt. , 52(3), 035002-1-6 (2011). References 23. P. P. Absil, J. V. Hryniewicz, B. E. Little, F.