Skip to main content
Top
Published in: Microsystem Technologies 9/2018

17-03-2018 | Technical Paper

Ultra-fast electro-optic switching control using a soliton pulse within a modified add-drop multiplexer

Authors: S. Soysouvanh, M. A. Jalil, I. S. Amiri, J. Ali, G. Singh, S. Mitatha, P. Yupapin, K. T. V. Grattan, M. Yoshida

Published in: Microsystem Technologies | Issue 9/2018

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

We have proposed the use of a soliton pulse that propagates within a modified add-drop filter, which is made of a GaAsInP/P material. It is in the form of a Panda-ring resonator, from which a bright/dark soliton pulse is input into a system via an input port. The conversion between bright and dark soliton pulses is introduced at the 3 dB coupler, i.e. the change in phase of π/2. But it is not superimposed each other. The output solitons obtained at the through and drop ports are bight and dark solitons respectively. Both signals can be used to form “ON’ and “OFF” or “1” and “0”, which are useful for the digital bit generation. The switching speed of the system can be improved by employing the two nonlinear side rings. In application, secure output bits can be arranged by using the alternative input solitons or the control ports, where the input bright and dark solitons can be converted into output bits. This means that the output bits can be randomly switched between “1” and “0”, which can be identified by the sender. Moreover, the additional information can be multiplexed via the add port and transmitted in either free space or optical fiber via the whispering gallery mode and through port outputs. Finally, the electro-optic switching can be transferred and the electronic switching by the embedded stacked layers, where the ultrafast switching of light input can lead the ultrafast electrical switching speed. The switching speed of ~ 5 fs and the offset time of ~ 220 fs of the “on” and OFF” are achieved by using the selected ring parameters.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Agrawal A, Tiwari M, Azabi YO, Janyani V, Rahman BMA, Grattan KTV (2013) Ultrabroad supercontinuum generation in tellurite equiangular spiral photonic crystal fiber. J Mod Opt 60(12):956–962CrossRef Agrawal A, Tiwari M, Azabi YO, Janyani V, Rahman BMA, Grattan KTV (2013) Ultrabroad supercontinuum generation in tellurite equiangular spiral photonic crystal fiber. J Mod Opt 60(12):956–962CrossRef
go back to reference Al J, Pornsuwancharoen P, Youplao P, Amiri IS, Chaiwong K, Chiangga S, Singh G, Yupapin P (2018) Coherent light squeezing states within a modified microring system. Results Phys (online) Al J, Pornsuwancharoen P, Youplao P, Amiri IS, Chaiwong K, Chiangga S, Singh G, Yupapin P (2018) Coherent light squeezing states within a modified microring system. Results Phys (online)
go back to reference Amiri IS, Ali J, Yupapin PP (2012) Enhancement of FSR and finesse using add/drop filter and panda ring resonator. J Mod Phys B 26:1250034CrossRef Amiri IS, Ali J, Yupapin PP (2012) Enhancement of FSR and finesse using add/drop filter and panda ring resonator. J Mod Phys B 26:1250034CrossRef
go back to reference Baccarani G, Ostoja P (1975) Electron mobility empirically related to the phosphorus concentration in silicon. Solid State Electron 18(6):579–580CrossRef Baccarani G, Ostoja P (1975) Electron mobility empirically related to the phosphorus concentration in silicon. Solid State Electron 18(6):579–580CrossRef
go back to reference Chen H, Nie R, Sun M, Deng W, Liang K (2017) 3-D electromagnetic analysis of single-phase tubular switched reluctance linear launcher. IEEE Trans Plasma Sci 45(7):1553–1560CrossRef Chen H, Nie R, Sun M, Deng W, Liang K (2017) 3-D electromagnetic analysis of single-phase tubular switched reluctance linear launcher. IEEE Trans Plasma Sci 45(7):1553–1560CrossRef
go back to reference Gall D (2016) Electron mean free path in elemental metals. J Appl Phys 119:085101CrossRef Gall D (2016) Electron mean free path in elemental metals. J Appl Phys 119:085101CrossRef
go back to reference Hafez W, Feng M (2005) Experimental demonstration of pseudomorphic heterojunction bipolar transistors with cutoff frequencies above 600 GHz. Appl Phys Lett 86(15):152101CrossRef Hafez W, Feng M (2005) Experimental demonstration of pseudomorphic heterojunction bipolar transistors with cutoff frequencies above 600 GHz. Appl Phys Lett 86(15):152101CrossRef
go back to reference Hu Y, Ding W, Wang T, Li S, Yang S, Yin Z (2017) Investigation on a multimode switched reluctance motor: design, optimization, electromagnetic analysis, and experiment. IEEE Trans Ind Electron 64(12):9886–9895CrossRef Hu Y, Ding W, Wang T, Li S, Yang S, Yin Z (2017) Investigation on a multimode switched reluctance motor: design, optimization, electromagnetic analysis, and experiment. IEEE Trans Ind Electron 64(12):9886–9895CrossRef
go back to reference Kejalakshmy NT, Grattan KTV, Rahman BMA (2016) Investigate of the optical modal properties of Al + 3 doped ZnO-coated Au waveguide for gas sensing applications using the finite element method. IEEE Sens J 16(5):1176–1181CrossRef Kejalakshmy NT, Grattan KTV, Rahman BMA (2016) Investigate of the optical modal properties of Al + 3 doped ZnO-coated Au waveguide for gas sensing applications using the finite element method. IEEE Sens J 16(5):1176–1181CrossRef
go back to reference Khedda ZD, Boughrara K, Dubas F, Ibtiouen R (2017) Nonlinear analytical prediction of the magnetic field and electromagnetic performances in switched reluctance machines. IEEE Trans Magn 53(7):8107311 Khedda ZD, Boughrara K, Dubas F, Ibtiouen R (2017) Nonlinear analytical prediction of the magnetic field and electromagnetic performances in switched reluctance machines. IEEE Trans Magn 53(7):8107311
go back to reference Kim SJ, Park MJ, Yun DJ, Lee WH, Kim GH, Yoon SM (2016) High performance and stable flexible memory thin-film transistor using In-Ga-Zn-O channel and ZnO charge-trap layers on poly(ethylene naphthalate) substrate. IEEE Trans Electron Devices 63(4):1557–1564CrossRef Kim SJ, Park MJ, Yun DJ, Lee WH, Kim GH, Yoon SM (2016) High performance and stable flexible memory thin-film transistor using In-Ga-Zn-O channel and ZnO charge-trap layers on poly(ethylene naphthalate) substrate. IEEE Trans Electron Devices 63(4):1557–1564CrossRef
go back to reference Kowsari A, Saghaei H (2018) Resonantly enhanced all-optical switching in microfibre Mach–Zehnder interferometers. Electron Lett 54(4):229–231CrossRef Kowsari A, Saghaei H (2018) Resonantly enhanced all-optical switching in microfibre Mach–Zehnder interferometers. Electron Lett 54(4):229–231CrossRef
go back to reference Ning C, Jin J, Yang K, Xie H, Wang DW, Liao Y, Wang LD, Chen HS, Li EP, Yin WY (2018) A novel electromagnetic bandgap power plane etched multiring CSRRs for suppressing simultaneous switching noise. IEEE Trans Electromagn Compat 60(3):733–737CrossRef Ning C, Jin J, Yang K, Xie H, Wang DW, Liao Y, Wang LD, Chen HS, Li EP, Yin WY (2018) A novel electromagnetic bandgap power plane etched multiring CSRRs for suppressing simultaneous switching noise. IEEE Trans Electromagn Compat 60(3):733–737CrossRef
go back to reference Phatharaworamet T, Teeka C, Jomtarak R, Mitatha S, Yupapin PP (2010) Random binary code generation using dark-bright soliton conversion control within a Panda Ring resonator. J Lightwave Technol 28(19):2804–2809CrossRef Phatharaworamet T, Teeka C, Jomtarak R, Mitatha S, Yupapin PP (2010) Random binary code generation using dark-bright soliton conversion control within a Panda Ring resonator. J Lightwave Technol 28(19):2804–2809CrossRef
go back to reference Phattharacorn P, Chiangga S, Ali J, Yupapin P (2018) Micro-optical probe model using integrated triple microring resonators for vertical depth identification. Microsyst Technol (online) Phattharacorn P, Chiangga S, Ali J, Yupapin P (2018) Micro-optical probe model using integrated triple microring resonators for vertical depth identification. Microsyst Technol (online)
go back to reference Pornsuwancharoen N, Amiri IS, Suhailin FH, Aziz MS, Ali J, Singh G, Yupapin P (2017a) Micro-current source generated by a WGM of light within a stacked silicon-graphene-Au waveguide. IEEE Photon Technol Lett 19:1768–1771CrossRef Pornsuwancharoen N, Amiri IS, Suhailin FH, Aziz MS, Ali J, Singh G, Yupapin P (2017a) Micro-current source generated by a WGM of light within a stacked silicon-graphene-Au waveguide. IEEE Photon Technol Lett 19:1768–1771CrossRef
go back to reference Pornsuwancharoen N, Youplao P, Amiri IS, Ali J, Yupapin P (2017b) Electron driven mobility model by light on the stacked metal-dielectric-interfaces. Microw Opt Technol Lett 59:1704–1709CrossRef Pornsuwancharoen N, Youplao P, Amiri IS, Ali J, Yupapin P (2017b) Electron driven mobility model by light on the stacked metal-dielectric-interfaces. Microw Opt Technol Lett 59:1704–1709CrossRef
go back to reference Pornsuwancharoen N, Youplao P, Aziz MS, Ali J, Amiri IS, Punthawanunt S, Yupapin P, Grattan KTV (2018) In-situ 3D micro-sensor model using the embedded plasmonic island for biosensors. Microsyst Technol (online) Pornsuwancharoen N, Youplao P, Aziz MS, Ali J, Amiri IS, Punthawanunt S, Yupapin P, Grattan KTV (2018) In-situ 3D micro-sensor model using the embedded plasmonic island for biosensors. Microsyst Technol (online)
go back to reference Pornsuwancharoen N, Youplao P, Aziz MS, Ali J, Singh G, Amiri IS, Punthawanunt S, Yupapin P (2018) Characteristics of microring circuit using plasmonic island driven electron mobility. Microsyst Technol (online) Pornsuwancharoen N, Youplao P, Aziz MS, Ali J, Singh G, Amiri IS, Punthawanunt S, Yupapin P (2018) Characteristics of microring circuit using plasmonic island driven electron mobility. Microsyst Technol (online)
go back to reference Sato K (2018) Realization and application of large-scale fast optical circuit switch for data center networking. J Lightwave Technol 36(7):1411–1419CrossRef Sato K (2018) Realization and application of large-scale fast optical circuit switch for data center networking. J Lightwave Technol 36(7):1411–1419CrossRef
go back to reference Shcherbakov MR, Vabishchevich PP, Shorokhov AS, Chong KE, Choi DY, Staude S, Miroshnichenko AE, Neshev DN, Fedyanin AA, Kivshar YS (2015) Ultrafast all-optical switching with magnetic resonances in nonlinear dielectric nanostructures. Nano Lett 15:6985–6990CrossRef Shcherbakov MR, Vabishchevich PP, Shorokhov AS, Chong KE, Choi DY, Staude S, Miroshnichenko AE, Neshev DN, Fedyanin AA, Kivshar YS (2015) Ultrafast all-optical switching with magnetic resonances in nonlinear dielectric nanostructures. Nano Lett 15:6985–6990CrossRef
go back to reference Xiao X, Xu Y, Guo H, Wang P, Cui X, Lu M, Wang Y, Peng B (2018) Theoretical modeling of 4.3 µm mid-infrared lasing in Dy3+ doped chalcogenide fiber lasers. IEEE Photon J 10(2):1501011 Xiao X, Xu Y, Guo H, Wang P, Cui X, Lu M, Wang Y, Peng B (2018) Theoretical modeling of 4.3 µm mid-infrared lasing in Dy3+ doped chalcogenide fiber lasers. IEEE Photon J 10(2):1501011
go back to reference Youplao P, Sarapat N, Pornsuwancharoen N, Chaiwong K, Jalil MA, Amiri IS, Aziz MS, Chiangga S, Singh G, Yupapin P, Grattan KTV (2018) Plasmonic op-amp circuit model using the inline successive microring pumping technique. Microsyst Technol, pp 1–7 (online) Youplao P, Sarapat N, Pornsuwancharoen N, Chaiwong K, Jalil MA, Amiri IS, Aziz MS, Chiangga S, Singh G, Yupapin P, Grattan KTV (2018) Plasmonic op-amp circuit model using the inline successive microring pumping technique. Microsyst Technol, pp 1–7 (online)
go back to reference Zhang M, Wang Y, Li P, Wen H (2017) Comparative studies on two electromagnetic repulsion mechanisms for high-speed vacuum switch. IET Electr Power Appl 12(2):247–253CrossRef Zhang M, Wang Y, Li P, Wen H (2017) Comparative studies on two electromagnetic repulsion mechanisms for high-speed vacuum switch. IET Electr Power Appl 12(2):247–253CrossRef
Metadata
Title
Ultra-fast electro-optic switching control using a soliton pulse within a modified add-drop multiplexer
Authors
S. Soysouvanh
M. A. Jalil
I. S. Amiri
J. Ali
G. Singh
S. Mitatha
P. Yupapin
K. T. V. Grattan
M. Yoshida
Publication date
17-03-2018
Publisher
Springer Berlin Heidelberg
Published in
Microsystem Technologies / Issue 9/2018
Print ISSN: 0946-7076
Electronic ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-018-3837-y

Other articles of this Issue 9/2018

Microsystem Technologies 9/2018 Go to the issue